950 resultados para Refined nonlinear non-conforming triangular plate element


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The aim of this paper is to explain the chloride concentration profiles obtained experimentally from control samples of an offshore platform after 25 years of service life. The platform is located 12 km off the coast of the Brazilian province Rio Grande do Norte, in the north-east of Brazil. The samples were extracted at different orientations and heights above mean sea level. A simple model based on Fick’s second law is considered and compared with a finite element model which takes into account transport of chloride ions by diffusion and convection. Results show that convective flows significantly affect the studied chloride penetrations. The convection velocity is obtained by fitting the finite element solution to the experimental data and seems to be directly proportional to the height above mean sea level and also seems to depend on the orientation of the face of the platform. This work shows that considering solely diffusion as transport mechanism does not allow a good prediction of the chloride profiles. Accounting for capillary suction due to moisture gradients permits a better interpretation of the material’s behaviour.

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This paper presents a theoretical framework intended to accommodate circuit devices described by characteristics involving more than two fundamental variables. This framework is motivated by the recent appearance of a variety of so-called mem-devices in circuit theory, and makes it possible to model the coexistence of memory effects of different nature in a single device. With a compact formalism, this setting accounts for classical devices and also for circuit elements which do not admit a two-variable description. Fully nonlinear characteristics are allowed for all devices, driving the analysis beyond the framework of Chua and Di Ventra We classify these fully nonlinear circuit elements in terms of the variables involved in their constitutive relations and the notions of the differential- and the state-order of a device. We extend the notion of a topologically degenerate configuration to this broader context, and characterize the differential-algebraic index of nodal models of such circuits. Additionally, we explore certain dynamical features of mem-circuits involving manifolds of non-isolated equilibria. Related bifurcation phenomena are explored for a family of nonlinear oscillators based on mem-devices.

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A model for chloride transport in concrete is proposed. The model accounts for transport several transport mechanisms such as diffusion, advection, migration, etc. This work shows the chloride transport equations at the macroscopic scale in non-saturated concrete. The equations involve diffusion, migration, capillary suction, chloride combination and precipitation mechanisms. The material is assumed to be infinitely rigid, though the porosity can change under influence of chloride binding and precipitation. The involved microscopic and macroscopic properties of the materials are measured by standardized methods. The variables which must be imposed on the boundaries are temperature, relative humidity and chloride concentration. The output data of the model are the free, bound, precipitated and total chloride ion concentrations, as well as the pore solution content and the porosity. The proposed equations are solved by means of the finite element method (FEM) implemented in MATLAB (classical Galerkin formulation and the streamline upwind Petrov-Galerkin (SUPG) method to avoid spatial instabilities for advection dominated flows).

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The linear instability and breakdown to turbulence induced by an isolated roughness element in a boundary layer at Mach 2:5, over an isothermal flat plate with laminar adiabatic wall temperature, have been analysed by means of direct numerical simulations, aided by spatial BiGlobal and three-dimensional parabolized (PSE-3D) stability analyses. It is important to understand transition in this flow regime since the process can be slower than in incompressible flow and is crucial to prediction of local heat loads on next-generation flight vehicles. The results show that the roughness element, with a height of the order of the boundary layer displacement thickness, generates a highly unstable wake, which is composed of a low-velocity streak surrounded by a three-dimensional high-shear layer and is able to sustain the rapid growth of a number of instability modes. The most unstable of these modes are associated with varicose or sinuous deformations of the low-velocity streak; they are a consequence of the instability developing in the three-dimensional shear layer as a whole (the varicose mode) or in the lateral shear layers (the sinuous mode). The most unstable wake mode is of the varicose type and grows on average 17% faster tan the most unstable sinuous mode and 30 times faster than the most unstable boundary layer mode occurring in the absence of a roughness element. Due to the high growthrates registered in the presence of the roughness element, an amplification factor of N D 9 is reached within 50 roughness heights from the roughness trailing edge. The independently performed Navier–Stokes, spatial BiGlobal and PSE-3D stability results are in excellent agreement with each other, validating the use of simplified theories for roughness-induced transition involving wake instabilities. Following the linear stages of the laminar–turbulent transition process, the roll-up of the three-dimensional shear layer leads to the formation of a wedge of turbulence, which spreads laterally at a rate similar to that observed in the case of compressible turbulent spots for the same Mach number.

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This document shows the design of the radiating element of the conformal adaptive antenna of multiple planar arrays GEODA-SARAS. Operating from 2.05 to 2.3 GHz in the S-band with dual circular polarization in Tx and Rx, it is possible to track and communicate with several satellites because of its adaptive beam. The antenna is based on a set of similar triangular arrays which are divided in sub-arrays of five elements called cells.

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This article presents a new material model developed with the aim of analyzing failure of blunt notched components made of nonlinear brittle materials. The model, which combines the cohesive crack model with Hencky's theory of total deformations, is used to simulate an experimental benchmark carried out previously by the authors. Such combination is achieved through the embedded crack approach concept. In spite of the unavailability of precise material data, the numerical predictions obtained show good agreement with the experimental results.

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Esta tesis doctoral está encuadrada dentro del marco general de la ingeniería biomédica aplicada al tratamiento de las enfermedades cardiovasculares, enfermedades que provocan alrededor de 1.9 millones (40%) de muertes al año en la Unión Europea. En este contexto surge el proyecto europeo SCATh-Smart Catheterization, cuyo objetivo principal es mejorar los procedimientos de cateterismo aórtico introduciendo nuevas tecnologías de planificación y navegación quirúrgica y minimizando el uso de fluoroscopía. En particular, esta tesis aborda el modelado y diagnóstico de aneurismas aórticos abdominales (AAA) y del trombo intraluminal (TIL), allí donde esté presente, así como la segmentación de estas estructuras en imágenes preoperatorias de RM. Los modelos físicos específicos del paciente, construidos a partir de imágenes médicas preoperatorias, tienen múltiples usos, que van desde la evaluación preoperatoria de estructuras anatómicas a la planificación quirúrgica para el guiado de catéteres. En el diagnóstico y tratamiento de AAA, los modelos físicos son útiles a la hora de evaluar diversas variables biomecánicas y fisiológicas de las estructuras vasculares. Existen múltiples técnicas que requieren de la generación de modelos físicos que representen la anatomía vascular. Una de las principales aplicaciones de los modelos físicos es el análisis de elementos finitos (FE). Las simulaciones de FE para AAA pueden ser específicas para el paciente y permiten modelar estados de estrés complejos, incluyendo los efectos provocados por el TIL. La aplicación de métodos numéricos de análisis tiene como requisito previo la generación de una malla computacional que representa la geometría de interés mediante un conjunto de elementos poliédricos, siendo los hexaédricos los que presentan mejores resultados. En las estructuras vasculares, generar mallas hexaédricas es un proceso especialmente exigente debido a la compleja anatomía 3D ramificada. La mayoría de los AAA se encuentran situados en la bifurcación de la arteria aorta en las arterias iliacas y es necesario modelar de manera fiel dicha bifurcación. En el caso de que la sangre se estanque en el aneurisma provocando un TIL, éste forma una estructura adyacente a la pared aórtica. De este modo, el contorno externo del TIL es el mismo que el contorno interno de la pared, por lo que las mallas resultantes deben reflejar esta particularidad, lo que se denomina como "mallas conformadas". El fin último de este trabajo es modelar las estructuras vasculares de modo que proporcionen nuevas herramientas para un mejor diagnóstico clínico, facilitando medidas de riesgo de rotura de la arteria, presión sistólica o diastólica, etc. Por tanto, el primer objetivo de esta tesis es diseñar un método novedoso y robusto para generar mallas hexaédricas tanto de la pared aórtica como del trombo. Para la identificación de estas estructuras se utilizan imágenes de resonancia magnética (RM). Deben mantenerse sus propiedades de adyacencia utilizando elementos de alta calidad, prestando especial atención al modelado de la bifurcación y a que sean adecuadas para el análisis de FE. El método tiene en cuenta la evolución de la línea central del vaso en el espacio tridimensional y genera la malla directamente a partir de las imágenes segmentadas, sin necesidad de reconstruir superficies triangulares. Con el fin de reducir la intervención del usuario en el proceso de generación de las mallas, es también objetivo de esta tesis desarrollar un método de segmentación semiautomática de las distintas estructuras de interés. Las principales contribuciones de esta tesis doctoral son: 1. El diseño, implementación y evaluación de un algoritmo de generación de mallas hexaédricas conformadas de la pared y el TIL a partir de los contornos segmentados en imágenes de RM. Se ha llevado a cabo una evaluación de calidad que determine su aplicabilidad a métodos de FE. Los resultados demuestran que el algoritmo desarrollado genera mallas conformadas de alta calidad incluso en la región de la bifurcación, que son adecuadas para su uso en métodos de análisis de FE. 2. El diseño, implementación y evaluación de un método de segmentación automático de las estructuras de interés. La luz arterial se segmenta de manera semiautomática utilizando un software disponible a partir de imágenes de RM con contraste. Los resultados de este proceso sirven de inicialización para la segmentación automática de las caras interna y externa de la pared aórtica utilizando métodos basado en modelos de textura y forma a partir de imágenes de RM sin contraste. Los resultados demuestran que el algoritmo desarrollado proporciona segmentaciones fieles de las distintas estructuras de interés. En conclusión, el trabajo realizado en esta tesis doctoral corrobora las hipótesis de investigación postuladas, y pretende servir como aportación para futuros avances en la generación de modelos físicos de geometrías biológicas. ABSTRACT The frame of this PhD Thesis is the biomedical engineering applied to the treatment of cardiovascular diseases, which cause around 1.9 million deaths per year in the European Union and suppose about 40% of deaths per year. In this context appears the European project SCATh-Smart Catheterization. The main objective of this project is creating a platform which improves the navigation of catheters in aortic catheterization minimizing the use of fluoroscopy. In the framework of this project, the specific field of this PhD Thesis is the diagnosis and modeling of abdominal aortic aneurysm (AAAs) and the intraluminal thrombus (ILT) whenever it is present. Patient-specific physical models built from preoperative imaging are becoming increasingly important in the area of minimally invasive surgery. These models can be employed for different purposes, such as the preoperatory evaluation of anatomic structures or the surgical planning for catheter guidance. In the specific case of AAA diagnosis and treatment, physical models are especially useful for evaluating pressures over vascular structures. There are multiple techniques that require the generation of physical models which represent the target anatomy. Finite element (FE) analysis is one the principal applications for physical models. FE simulations for AAA may be patient-specific and allow modeling biomechanical and physiological variables including those produced by ILT, and also the segmentation of those anatomical structures in preoperative MR images. Applying numeric methods requires the generation of a proper computational mesh. These meshes represent the patient anatomy using a set of polyhedral elements, with hexahedral elements providing better results. In the specific case of vascular structures, generating hexahedral meshes is a challenging task due to the complex 3D branching anatomy. Each patient’s aneurysm is unique, characterized by its location and shape, and must be accurately represented for subsequent analyses to be meaningful. Most AAAs are located in the region where the aorta bifurcates into the iliac arteries and it is necessary to model this bifurcation precisely and reliably. If blood stagnates in the aneurysm and forms an ILT, it exists as a conforming structure with the aortic wall, i.e. the ILT’s outer contour is the same as the wall’s inner contour. Therefore, resulting meshes must also be conforming. The main objective of this PhD Thesis is designing a novel and robust method for generating conforming hexahedral meshes for the aortic wall and the thrombus. These meshes are built using largely high-quality elements, especially at the bifurcation, that are suitable for FE analysis of tissue stresses. The method accounts for the evolution of the vessel’s centerline which may develop outside a single plane, and generates the mesh directly from segmented images without the requirement to reconstruct triangular surfaces. In order to reduce the user intervention in the mesh generation process is also a goal of this PhD. Thesis to develop a semiautomatic segmentation method for the structures of interest. The segmentation is performed from magnetic resonance image (MRI) sequences that have tuned to provide high contrast for the arterial tissue against the surrounding soft tissue, so that we determine the required information reliably. The main contributions of this PhD Thesis are: 1. The design, implementation and evaluation of an algorithm for generating hexahedral conforming meshes of the arterial wall and the ILT from the segmented contours. A quality inspection has been applied to the meshes in order to determine their suitability for FE methods. Results show that the developed algorithm generates high quality conforming hexahedral meshes even at the bifurcation region. Thus, these meshes are suitable for FE analysis. 2. The design, implementation and evaluation of a semiautomatic segmentation method for the structures of interest. The lumen is segmented in a semiautomatic way from contrast filled MRI using an available software. The results obtained from this process are used to initialize the automatic segmentation of the internal and external faces of the aortic wall. These segmentations are performed by methods based on texture and shape models from MRI with no contrast. The results show that the algorithm provides faithful segmentations of the structures of interest requiring minimal user intervention. In conclusion, the work undertaken in this PhD. Thesis verifies the investigation hypotheses. It intends to serve as basis for future physical model generation of proper biological anatomies used by numerical methods.

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El presente ensayo pretende aportar una reflexión sobre el amplio territorio de la imagen en la arquitectura hoy. Para ello un buen ejemplo es el proyecto del Rascacielos de la Friedrichstrasse, realizado por Mies van der Rohe en el periodo de entre guerras de 1921/22. Muchas son las razones que han hecho de esta obra la elegida, pero una más actual sobresale del resto: que de los cientos de ensayos vertidos sobre esta obra solo se haya comentado -salvo alguna excepción- las características objetuales de lo directamente descrito por las vistas -como si fuera un fiel reflejo de la realidad- sin entrar a analizar la verdadera naturaleza física y simbólica de lo representado como expresión subjetiva –espacial- de una arquitectura. Si su importancia como punto de inflexión en el desarrollo inicial de una obra plenamente moderna es un motivo más que suficiente para dedicarle un estudio pormenorizado, ya que puede resultar crucial para comprender los inicios del autor en el Movimiento Moderno. Su presencia como un reducido conjunto de cuatro vistas perspectivas, mezcla de una fotografía del lugar y de un dibujo realizado sobre la misma, acarrea en nuestra opinión significaciones igual de importantes para la comprensión de esta arquitectura que todas aquellas ideas descritas sobre las mismas. Creadas en una época seminal, cuando el lenguaje de la fotografía y el cine están en pleno desarrollo, se puede afirmar que el conjunto de representaciones del Rascacielos de la Friedrichstrasse forman parte como referente histórico de una de las primeras arquitecturas virtuales que pertenecen de pleno derecho al Movimiento Moderno. Paradigma de las más absoluta actualidad, por encontrarse en esa frontera de lo nunca realizado, pero sí asumible espacialmente como realidad fotográfica, las imágenes del rascacielos se pueden considerar así como una de las primeras reflexiones sobre la naturaleza virtual del proyecto arquitectónico postindustrial. No siendo novedoso que la descripción fotográfica de una obra absorba y comunique por sí misma las múltiples propiedades que esta posee, como tampoco lo es que la mayoría de arquitecturas se den por conocidas actualmente a través de los medios. Sorprende que hasta hoy no se hayan analizado con la misma intensidad las múltiples razones que dieron lugar a unas imágenes cuya poética da forma por igual a la arquitectura que representan. Si la intención es reflexionar así sobre este hecho contemporáneo mediante un ejemplo paradigmático, certificado por la historia, nos veremos obligados a emplear una metodología acorde a la condición dual que toda imagen mediatizada produce en su lectura como mezcla fluctuante entre lo que se interpreta de manera autónoma a través de lo representado y de los significados que la imagen adquiere a lo largo de su recorrido como referente histórico. Esta ambivalencia interpretativa llevará a organizar este ensayo mediante dos bloques claramente diferenciados que, complementarios entre sí, siguen el orden de lectura que toda imagen de una arquitectura ofrece a través de los medios. Así, una primera parte, titulada La imagen de una arquitectura, analiza la interpretación que la historia y el autor han dado al rascacielos por medio de su uso en las diferentes exposiciones, revistas, tratados de estilos y monografías de las que ha formado parte. Este recorrido, que es el verdadero espacio donde estas arquitecturas residen, limitado -por una cuestión de poner orden- al estudio a los países que acogieron en vida al autor, servirá para establecer una primera narrativa que expone las diferentes posiciones que la crítica ha producido a lo largo del tiempo. La presencia del primer rascacielos junto al segundo, en la publicación que el arquitecto realiza de manera temprana en Frühlicht, obligará a incorporar esta segunda solución como una parte más del estudio. Cargada de las citas obligadas, de las diferentes personalidades que se han enfrentado a dichos proyectos, este primer análisis historiográfico establece un primer estado de la cuestión donde se revela una lectura ambivalente de los rascacielos. Si la interpretación directa de sus imágenes ha permitido profundizar en las características del vidrio y sus reflejos y en la desnudez de una estructura metálica como claros ejemplos de una expresión moderna y tecnológica de vidrio y el acero. Las particulares formas triangulares del primero y las formas sinuosas del segundo han dado lugar a una multitud de calificaciones, de ser ejemplo tanto de un Expresionismo como de un dadaísmo o constructivismo, que con el tiempo han ido creciendo hacia una admiración artística con una fuerte carga poética. Este lectura histórica, que remata con un breve periodo más actual donde se inicia el cuestionamiento de su carácter utópico y se recupera puntualmente su naturaleza como proyecto, servirá para plantear finalmente una serie de dudas que, sin respuesta aparente, exigen revisar la lectura de sus imágenes como parte de lo que realmente son: expresión de una nueva arquitectura que a partir de ese preciso momento entra de pleno derecho en el Movimiento Moderno. Por otro lado, la existencia en el discurso posterior del arquitecto de un proceso de formalizacion altamente valorado por su autor y la presencia de igual a igual de un lugar en las representaciones y planos de los rascacielos, que la historia parece haber obviado, servirán como razón más que suficiente para la revisión de unas relaciones iniciales con la vanguardia -todavía hoy poco definidas- así como para proponer la lectura renovada de dichas propuestas en altura por lo que también son: proyectos que responden a unas necesidades espaciales de un lugar y tiempo muy determinados. Esta segunda parte, denominada La arquitectura de una imagen, se plantea así más como una inmersión total en el mundo del proyecto que una simple descripción nominal del mismo. Conscientemente simétrica y opuesta a un primer bloque histórico, esta segunda parte -mucho más extensa y parte central de esta tesis- se concentra en el análisis de las imágenes como: aquel conjunto de eventos históricos que aplicados sobre la ciudad, el lugar, el rascacielos, y los procesos técnicos de la imagen dieron lugar a estas arquitecturas como razón de ser. Consecuentemente se tratará pues de bucear en las razones que, ocultas como proceso de formalización, llevaron a Mies a dar un paso más allá hacia a una nueva manera de hacer, ver y pensar su arquitectura, de expresar un espacio. La aproximación a estas imágenes radicará por tanto en resaltar al mismo tiempo la naturaleza de unas representaciones cuyas características fotográficas son el fiel reflejo de una época donde los nuevos medios visuales –cine y fotografía- empiezan a ser cuestionados por su excesiva utilización. La complejidad de unos hechos coincidentes en el tiempo obligará a dividir este estudio en un primer acercamiento general, a la respuesta dada por una mayoría de participantes al concurso, para así cotejar la importancia de una actitud proyectual y contextual común de Mies y sus compañeros. Mezcla de requerimientos y necesidades de la propia historia de la parcela, de las peculiaridades de un lugar y las exigencias programáticas del concurso; el siguiente paso consistirá en reconstruir el proceso de formalización del conjunto de dibujos que caracterizan ambos proyectos para así comprender los mecanismo que, suspendidos como traslaciones entre las diferentes representaciones, operan en la realización física de dichas imágenes y complementan como pensamiento la idea arquitectónica de los mismos. Con lo que se pretende ofrecer dos cosas: una interpretación que tenga en cuenta la novedosa naturaleza de la manera de pensar lo fotográfico en el arquitecto, así como la particular idiosincrasia del momento en que estas concurren. Dicho de otro modo, se realizará una aproximación de las vistas del primer rascacielos que tenga en cuenta la historia tecnológica y visual que rodea al evento y las características de una ejecución física todavía hoy sin aclarar del todo. El descubrimiento de una serie de incoherencias geométricas en las plantas, alzado y vistas del primer proyecto llevará a argumentar la presencia de un trampantojo que, nunca antes revelado, se entiende lleno de unas intenciones espaciales plenamente vanguardistas. Interpretación arquitectónica de las imágenes donde la presencia de una serie de elementos directamente ligados al lenguaje fotográfico y cinematográfico se traduce en una nueva lectura espacial plenamente dinámica llena de dislocación, ritmo y simultaneidad alejada de la idea de ver la forma como un elemento permanentemente fijo. Sugerencia que nos lleva directamente a la lectura del segundo proyecto de rascacielos como una clara continuación de lo imaginado en el primero. Para finalizar, tras una revisión biográfica -previa al proyecto- que desvela unas preocupaciones urbanas y un deseo de cambio anterior al concurso de la Friedrichstrasse, se comparan estas nuevas significaciones espaciales con una práctica de vanguardia que, coetánea a la convocatoria de 1921, demuestran unas investigaciones muy similares con unos mismos intereses cinematográficos. La lectura de las propuestas de tres artistas próximos en ese momento al arquitecto -como son Hans Richter, Moholy-Nagy y El Lissitzky- permiten demostrar unas preocupaciones muy similares a lo conseguido por Mies con los rascacielos que parecen haber servido de ejemplo y motivación mutua para el surgimiento de una nueva espacialidad -más fluida-. Esta lectura permitirá recuperar la importancia de estos dos proyectos como la expresión directa de una nueva manera de pensar y hacer su arquitectura que ya no tendrá vuelta atrás en la obra de Mies. A la vez que recuperar la potencialidad poética de unas vistas que, así definidas reiteradamente por la crítica, se revelan ahora como directas transmisoras de ese deseo de cambio arquitectónico evidenciado en los proyectos posteriores. Racionalización de una poética que al ir más allá de la forma directamente transcrita permite establecer una última reflexión general sobre como opera la imagen en la arquitectura, así como la pertinencia crítica de este proyecto para con el mundo virtual de hoy. En definitiva, más allá del poder evocador de estas representaciones, este será un estudio que pretende cuestionar las características que la imagen de la arquitectura puede proponer más allá de su literalidad por medio de la fascinante interacción que se produce entre la imagen y lo espacialmente imaginado. Encuentros, recursos e intereses de una respuesta plenamente arquitectónica que, además de dar luz a un cambio tan inclasificable como moderno, abre el camino a la interpretación de un proceso de formalizacion que, reiteradamente defendido por su autor justifican una intensidad poética dada por la historia y reafirman una preocupación artística a menudo desmentida por su autor. Dicho de otro modo, si profundizar en las razones arquitectónicas, históricas y técnicas que llevan a Mies a realizar sus rascacielos, por medio de su relación con la vanguardia y el cine, arrojan luz y explican el cambio que se está gestando en el arquitecto cara una nueva espacialidad fluida. Reflexionar sobre su naturaleza espacial -de estas imágenes ya icónicas- equivale a aportar una reflexión crítica sobre la naturaleza simbólica de la imagen de la arquitectura hoy. “Aunque el puesto clave que ocupa el Rascacielos de la Friedrichstrasse dentro de la historia de la arquitectura moderna nunca ha sido seriamente cuestionado, la opinion critica al respecto siempre ha estado dividida. Desde la publicacion de la monografia de Philip Johnson sobre Mies en 1947, el muro cortina como una piel transparente que reviste el esqueleto estructural has ido aclamado como un gran avance pionero. Otros puntos de vista sobre el edificio, subrayando su supuesta planta expresionista, lo han visto como un esfuerzo un poco menos aventurado. Asi calibrada, la propuesta de Mies para la Friedrichstrasse es radicalmente moderna en mas de un sentido enfatizado por Johnson.” 1 W.Tegethoff ABSTRACT This essay reflects on the broad territory of the image in today’s architecture. One good example is the Friedrichstrasse Skyscraper design by Mies van der Rohe in 1921/22, during the period between World Wars I and II. There are many reasons why this work has been chosen, but one of the most recent stands out above the rest: of the hundreds of essays written on this work, comments have been made only (with the odd exception) on the objectual characteristics of what has been directly described by the views (as if it were a genuine reflection of reality), without analysing the real physical and symbolic nature of the representation a subjective (spatial) expression of architecture. If its importance as a point of inflection in the initial development of a completely modern work is more than enough reason to make a detailed study, since it may be crucial for understanding the author’s beginnings in the Modern Movement. Its presence as a reduced set of four views, the combination of a photograph of the place and a drawing made of it, in our opinion, carry meanings that are as important for understanding this architecture as all the ideas described about them. Created during an early period, when the languages of photography and cinema were in full swing, it can be said that the perspectives of the Friedrichstrasse Skyscraper form a historical reference of one of the first virtual architectures that belong entirely to the Modern Movement. A paradigm of the most absolute modernity owing to the fact that it is on that frontier of the never-accomplished, but spatially assumable as photographic reality, the images of the skyscraper can be considered as one of the first reflections on the virtual nature of post-industrial architectural design. There is nothing new in the fact that the photographic description of work absorbs and communicates on its own the multiple properties it involves and there is nothing new in the fact that most architectures become known today through the media. It is surprising that no analysis has been made to date, with the same intensity, of the many reasons that led to a number of images whose poetry add form to the architecture they represent. If the intention is to reflect on this contemporary fact using a paradigmatic example certified by history, we will be forced to use a methodology that corresponds to the dual condition produced by the interpretation of all media images as a fluctuating combination of what is interpreted independently through the representation and meanings the image acquires as a historical reference. This ambivalent interpretation will lead this essay to be structured in two clearly different and complementary blocks that follow the reading order offered by any image of architecture in the media. Thus, a first part, titled The image of an architecture, analyses the interpretation history and the author have given to the skyscraper through its use in the various exhibitions, magazines, style agreements and monographs in which it has been included. This examination, which is the real space in which these architectures reside, is (to delimit and organise the study) restricted to countries in which the author lived during his lifetime and it will help establish a first narrative that considers the different interpretations made by critics over time. The presence of the first skyscraper next to the second one in the publication the architect makes early on in Frühlicht will require the second solution to be incorporated as another part of the study. Laden with necessary quotes by the various personalities who have examined said designs, this first historiographical analysis establishes an initial state of the question that reveals an ambivalent interpretation of skyscrapers. If the direct interpretation of the images has made it possible to closely examine the characteristics of the glass and its reflections and the nudity of a metal structure as clear examples of a modern and technological expression of glass and steel. The particular triangular shapes of the former and the sinuous shapes of the latter have generated many classifications that suggest it is an example of Expressionism, Dadaism or Constructivism, which have grown over time into artistic admiration laden with poetry. This historical reading, which concludes with a more recent short period that begins to question the utopian character and recovers its nature as a project, will finally consider a number of doubts that have no apparent answer and require a revision of the reading of the images as part of what they actually are: expression of a new architecture that becomes part of the Modern Movement as from that precise moment. In addition, the existence in the architect’s subsequent discourse of a formalisation process highly valued by the author and the equal presence of a place in the representations and plans of a skyscraper history seems to have forgotten, will stand as more than sufficient reason for a revision of initial relations with the avantgarde -not particularly well defined today- together with a renewed reading of said vertical proposals for what they also are: projects that respond to the special needs of a very specific place and time. This second part, titled The architecture of an image, is presented more as a total immersion in the project world than a mere nominal description of it. Deliberately symmetrical and opposite to a historic first bloc, this second part (much longer and central part of the thesis) it will focus on analysing images as: the set of historical events that affected the skyscraper, city, place and technical processes image to provide these architectures with their raison d’être. Consequently, the aim is to delve in the reasons which, hidden as a formalisation process, led Mies to move on to a new form of doing, seeing and thinking his architecture, of expressing a space. The approach to these images will therefore lie in highlighting the nature of a number of representations whose photographic features are the true reflection of a period in which the new visual media (cinema and photography) begin to be questioned due to excessive use. The complexity of facts that coincide in time will require this study to be divided into a first general approach, with a response given by most of the participants in the competition, to compare the importance of a common approach in terms of project and context of the response given by Mies and his colleagues. A combination of requirements and needs of the very history of the plot of land, the peculiarities of a place and the programmatic requirements of the competition; the next step will reconstruct the formalisation process of the set of drawings that characterise both to understand the mechanism which, suspended like translations between the different representations, operates in the realisation of said images and complements as thought their architectural idea. The aim is thus to offer two things: an interpretation that takes into account the new way in which the architect works with photography, together with the particular idiosyncrasy of the moment at which they occur. In other words, the approach will focus on the views of the first skyscraper, which takes into account the technological and visual history that surrounds the event and the characteristics of a physical execution that still remains unexplained in full. The subsequent discovery of a number of geometrical incoherences in the floor plans, elevations and views of the first project will lead to an argument for the presence of trompe l’oeil which, never before revealed, is seen as laden with completely avant-garde spatial intentions. Architectural interpretation of the images where the presence of a number of elements directly linked to the languages of photography and cinema is translated into a new spatial reading that is completely dynamic and full of dislocation, rhythm and simultaneity far-removed from the idea of seeing shape as a permanently fixed element. This suggestion takes us to directly to the second skyscraper design as a clear continuation of what he imagined in the first. To end, after a preliminary biographical revision (previous to the project) that reveals urban concerns and a desire for change before the Friedrichstrasse competition, a comparison is made of these new spatial meanings with avant-garde practice which, contemporary with the 1921 competition, show very similar investigations with the same cinematographic interest. The reading of the proposals of three artists close to the architect at that time -i.e. Hans Richter, Moholy-Nagy and El Lissitzky- reveals concerns that are very similar to what Mies achieved with the skyscrapers that seem to have been used as an example and mutual motivation for the creation of a new (more fluent) spatiality. This interpretation will make it possible to recover the importance of these two projects as the direct expression of a new way of thinking and doing his architecture that was to remain fixed in Mies’ work. This also gives rise to the possibility of recovering the poetic potential of views which, as defined repeatedly by the critics, now stand as the direct transmitters of the desire for architectural change shown in later projects. A rationalisation of poetry which, by going beyond the directly transcribed form, gives rise to the establishment of one general final reflection on how the image works in architecture, together with the critical relevance of this design for today’s virtual world. In short, beyond the evocative power of images this will be a study which questions the characteristics the image of architecture can propose beyond its literality through the fascinating interaction between the image and spatially imagined. Encounters, resources and interests of a completely architectural response that, besides sheds light to a change that is as non-classifiable as it is modern, shows the way to the interpretation of a formalisation process which, repeatedly defined by the author, justifies a poetic intensity and confirms an artistic concern often denied by the author. In other words, examining the architectural, historical and technical reasons that led Mies to create his skyscrapers, thanks to its relationship with the avant-garde and cinema, sheds light on and explains the change taking place in the architect with regard to a new fluent spatiality. Reflecting on the spatial nature -of these iconic images- is tantamount to a critical reflection on the symbolic nature of architecture today. “Although the key position of the Friedrichstrasse Office Building within the early history of modern architecture has never been seriously challenged, critical opinion on it has always been divided. Ever since the publication of Philip Johnson’s monograph on Mies in 1947, the curtain wall as a transparent skin sheathing the skeleton structure has frequently been hailed as a pioneering breakthrough. Other views of the building, stressing its supposedly Expressionist plan, have seen it as a somewhat less adventurous effort. In fact, the project has never been regarded in abroad context. Thus measured, Mies’s proposal fro Friedrichstrasse is radically modern in more than the one respect emphasized by Johnson.” 1 W.Tegethoff

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The electro-dynamical tethers emit waves in structured denominated Alfven wings. The Derivative Nonlineal Schrödinger Equation (DNLS) possesses the capacity to describe the propagation of circularly polarized Alfven waves of finite amplitude in cold plasmas. The DNLS equation is truncated to explore the coherent, weakly nonlinear, cubic coupling of three waves near resonance, one wave being linearly unstable and the other waves damped. In this article is presented a theoretical and numerical analysis when the growth rate of the unstable wave is next to zero considering two damping models: Landau and resistive. The DNLS equation presents a chaotic dynamics when is consider only three wave truncation. The evolution to chaos possesses three routes: hard transition, period-doubling and intermittence of type I.

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GaN y AlN son materiales semiconductores piezoeléctricos del grupo III-V. La heterounión AlGaN/GaN presenta una elevada carga de polarización tanto piezoeléctrica como espontánea en la intercara, lo que genera en su cercanía un 2DEG de grandes concentración y movilidad. Este 2DEG produce una muy alta potencia de salida, que a su vez genera una elevada temperatura de red. Las tensiones de puerta y drenador provocan un stress piezoeléctrico inverso, que puede afectar a la carga de polarización piezoeléctrica y así influir la densidad 2DEG y las características de salida. Por tanto, la física del dispositivo es relevante para todos sus aspectos eléctricos, térmicos y mecánicos. En esta tesis se utiliza el software comercial COMSOL, basado en el método de elementos finitos (FEM), para simular el comportamiento integral electro-térmico, electro-mecánico y electro-térmico-mecánico de los HEMTs de GaN. Las partes de acoplamiento incluyen el modelo de deriva y difusión para el transporte electrónico, la conducción térmica y el efecto piezoeléctrico. Mediante simulaciones y algunas caracterizaciones experimentales de los dispositivos, hemos analizado los efectos térmicos, de deformación y de trampas. Se ha estudiado el impacto de la geometría del dispositivo en su auto-calentamiento mediante simulaciones electro-térmicas y algunas caracterizaciones eléctricas. Entre los resultados más sobresalientes, encontramos que para la misma potencia de salida la distancia entre los contactos de puerta y drenador influye en generación de calor en el canal, y así en su temperatura. El diamante posee une elevada conductividad térmica. Integrando el diamante en el dispositivo se puede dispersar el calor producido y así reducir el auto-calentamiento, al respecto de lo cual se han realizado diversas simulaciones electro-térmicas. Si la integración del diamante es en la parte superior del transistor, los factores determinantes para la capacidad disipadora son el espesor de la capa de diamante, su conductividad térmica y su distancia a la fuente de calor. Este procedimiento de disipación superior también puede reducir el impacto de la barrera térmica de intercara entre la capa adaptadora (buffer) y el substrato. La muy reducida conductividad eléctrica del diamante permite que pueda contactar directamente el metal de puerta (muy cercano a la fuente de calor), lo que resulta muy conveniente para reducir el auto-calentamiento del dispositivo con polarización pulsada. Por otra parte se simuló el dispositivo con diamante depositado en surcos atacados sobre el sustrato como caminos de disipación de calor (disipador posterior). Aquí aparece una competencia de factores que influyen en la capacidad de disipación, a saber, el surco atacado contribuye a aumentar la temperatura del dispositivo debido al pequeño tamaño del disipador, mientras que el diamante disminuiría esa temperatura gracias a su elevada conductividad térmica. Por tanto, se precisan capas de diamante relativamente gruesas para reducer ele efecto de auto-calentamiento. Se comparó la simulación de la deformación local en el borde de la puerta del lado cercano al drenador con estructuras de puerta estándar y con field plate, que podrían ser muy relevantes respecto a fallos mecánicos del dispositivo. Otras simulaciones se enfocaron al efecto de la deformación intrínseca de la capa de diamante en el comportamiento eléctrico del dispositivo. Se han comparado los resultados de las simulaciones de la deformación y las características eléctricas de salida con datos experimentales obtenidos por espectroscopía micro-Raman y medidas eléctricas, respectivamente. Los resultados muestran el stress intrínseco en la capa producido por la distribución no uniforme del 2DEG en el canal y la región de acceso. Además de aumentar la potencia de salida del dispositivo, la deformación intrínseca en la capa de diamante podría mejorar la fiabilidad del dispositivo modulando la deformación local en el borde de la puerta del lado del drenador. Finalmente, también se han simulado en este trabajo los efectos de trampas localizados en la superficie, el buffer y la barrera. Las medidas pulsadas muestran que tanto las puertas largas como las grandes separaciones entre los contactos de puerta y drenador aumentan el cociente entre la corriente pulsada frente a la corriente continua (lag ratio), es decir, disminuir el colapse de corriente (current collapse). Este efecto ha sido explicado mediante las simulaciones de los efectos de trampa de superficie. Por su parte, las referidas a trampas en el buffer se enfocaron en los efectos de atrapamiento dinámico, y su impacto en el auto-calentamiento del dispositivo. Se presenta también un modelo que describe el atrapamiento y liberación de trampas en la barrera: mientras que el atrapamiento se debe a un túnel directo del electrón desde el metal de puerta, el desatrapamiento consiste en la emisión del electrón en la banda de conducción mediante túnel asistido por fonones. El modelo también simula la corriente de puerta, debida a la emisión electrónica dependiente de la temperatura y el campo eléctrico. Además, también se ilustra la corriente de drenador dependiente de la temperatura y el campo eléctrico. ABSTRACT GaN and AlN are group III-V piezoelectric semiconductor materials. The AlGaN/GaN heterojunction presents large piezoelectric and spontaneous polarization charge at the interface, leading to high 2DEG density close to the interface. A high power output would be obtained due to the high 2DEG density and mobility, which leads to elevated lattice temperature. The gate and drain biases induce converse piezoelectric stress that can influence the piezoelectric polarization charge and further influence the 2DEG density and output characteristics. Therefore, the device physics is relevant to all the electrical, thermal, and mechanical aspects. In this dissertation, by using the commercial finite-element-method (FEM) software COMSOL, we achieved the GaN HEMTs simulation with electro-thermal, electro-mechanical, and electro-thermo-mechanical full coupling. The coupling parts include the drift-diffusion model for the electron transport, the thermal conduction, and the piezoelectric effect. By simulations and some experimental characterizations, we have studied the device thermal, stress, and traps effects described in the following. The device geometry impact on the self-heating was studied by electro-thermal simulations and electrical characterizations. Among the obtained interesting results, we found that, for same power output, the distance between the gate and drain contact can influence distribution of the heat generation in the channel and thus influence the channel temperature. Diamond possesses high thermal conductivity. Integrated diamond with the device can spread the generated heat and thus potentially reduce the device self-heating effect. Electro-thermal simulations on this topic were performed. For the diamond integration on top of the device (top-side heat spreading), the determinant factors for the heat spreading ability are the diamond thickness, its thermal conductivity, and its distance to the heat source. The top-side heat spreading can also reduce the impact of thermal boundary resistance between the buffer and the substrate on the device thermal behavior. The very low electrical conductivity of diamond allows that it can directly contact the gate metal (which is very close to the heat source), being quite convenient to reduce the self-heating for the device under pulsed bias. Also, the diamond coated in vias etched in the substrate as heat spreading path (back-side heat spreading) was simulated. A competing mechanism influences the heat spreading ability, i.e., the etched vias would increase the device temperature due to the reduced heat sink while the coated diamond would decrease the device temperature due to its higher thermal conductivity. Therefore, relative thick coated diamond is needed in order to reduce the self-heating effect. The simulated local stress at the gate edge of the drain side for the device with standard and field plate gate structure were compared, which would be relevant to the device mechanical failure. Other stress simulations focused on the intrinsic stress in the diamond capping layer impact on the device electrical behaviors. The simulated stress and electrical output characteristics were compared to experimental data obtained by micro-Raman spectroscopy and electrical characterization, respectively. Results showed that the intrinsic stress in the capping layer caused the non-uniform distribution of 2DEG in the channel and the access region. Besides the enhancement of the device power output, intrinsic stress in the capping layer can potentially improve the device reliability by modulating the local stress at the gate edge of the drain side. Finally, the surface, buffer, and barrier traps effects were simulated in this work. Pulsed measurements showed that long gates and distances between gate and drain contact can increase the gate lag ratio (decrease the current collapse). This was explained by simulations on the surface traps effect. The simulations on buffer traps effects focused on illustrating the dynamic trapping/detrapping in the buffer and the self-heating impact on the device transient drain current. A model was presented to describe the trapping and detrapping in the barrier. The trapping was the electron direct tunneling from the gate metal while the detrapping was the electron emission into the conduction band described by phonon-assisted tunneling. The reverse gate current was simulated based on this model, whose mechanism can be attributed to the temperature and electric field dependent electron emission in the barrier. Furthermore, the mechanism of the device bias via the self-heating and electric field impact on the electron emission and the transient drain current were also illustrated.

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The possibilities and limitations of high order hyperelements in plate bending analysis are discussed. Explicit shape functions for some types of triangular elements are given. These elements are applied to simple cases to assess their computational efficiency.

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Safety is one of the most important feature in the aviation industry, and this involves too many factors. One of these is the aircraft maintenance. Over time, the procedures have been changing, and improving themselves. Non Destructive Testing (NDT) appeared in the late 19th century as a great option, because it enabled to inspect any structure without damaging it. Nowadays, there are several kinds of NDT, but ultrasound is one of the most widely used. This Master Thesis is devoted to an innovative ultrasound technique for crack detection. A technique, whose main aim lies in getting a good location of defects from a few measures, breaking with the currently widespread methods, as phased array. It is not necessary to use trains of waves, only discrete excitations, which means a great saving of time and energy. This work is divided into two steps: the first is to develop a multiphysics simulator, which is able to solve linear elasticity 3D problems (via Finite Element Method, FEM). This simulator allows to obtain in a computationally efficient way the displacement field for different frequencies and excitations. The solution of this elastic problem is needed to be used in the second step, which consists of generating a code that implements a mathematical tool named topological derivative, allowing to locate defects in the studied domain. In this work, the domain is a plate, and the defect is a hidden spherical void. The simulator has been developed using open source software (Elmer, Gmsh, ...), achieving a highly versatile simulator, which allows to change the configuration easily: domain size and shape, number and position of transducers, etc. Just one comercial software is used, Matlab. It is used to implement the topological derivative. In this work, the performance of the method is tested in several examples comparing the results when one or more frequencies are considered for different configurations of emisors/receptors.

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We study a parabolic–elliptic chemotactic system describing the evolution of a population’s density “u” and a chemoattractant’s concentration “v”. The system considers a non-constant chemotactic sensitivity given by “χ(N−u)”, for N≥0, and a source term of logistic type “λu(1−u)”. The existence of global bounded classical solutions is proved for any χ>0, N≥0 and λ≥0. By using a comparison argument we analyze the stability of the constant steady state u=1, v=1, for a range of parameters. – For N>1 and Nλ>2χ, any positive and bounded solution converges to the steady state. – For N≤1 the steady state is locally asymptotically stable and for χN<λ, the steady state is globally asymptotically stable.

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The study of lateral dynamics of running trains on bridges is of importance mainly for the safety of the traffic, and may be relevant for laterally compliant bridges. These studies require threedimensional coupled vehicle-bridge models, wheree consideration of wheel to rail contact is a key aspect. Furthermore, an adequate evaluation of safety of rail traffic requires nonlinear models. A nonlinear coupled model is proposed here for vehicle-structure vertical and lateral dynamics. Vehicles are considered as fully three-dimensional multibody systems including gyroscopic terms and large rotation effects. The bridge structure is modeled by means of finite elements which may be of beam, shell or continuum type and may include geometric or material nonlinearities. The track geometry includes distributed track alignment irregularities. Both subsystems (bridge and vehicles) are described with coordinates in absolute reference frames, as opposed to alternative approaches which describe the multibody system with coordinates relative to the base bridge motion. The wheelrail contact employed is a semi-Hertzian model based on realistic wheel-rail profiles. It allows a detailed geometrical description of the contact patch under each wheel including multiple-point contact, flange contact and uplift. Normal and tangential stresses in each contact are integrated at each time-step to obtain the resultant contact forces. The models have been implemented within an existing finite element analysis software with multibody capabilities, Abaqus (Simulia Ltd., 2010). Further details of the model are presented in Antolín et al. (2012). Representative applications are presented for railway vehicles under lateral wind action on laterally compliant viaducts, showing the relevance of the nonlinear wheel-rail contact model as well as the interaction between bridge and vehicle.

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In this paper some aspects of the use of non-reflecting boundaries in dynamic problems, analyzed in time domain, are considered. Current trends for treating the above mentioned problems are summarized with a particular emphasis on the use of numerical techniques, such as Boundary Element Method (BEM) or mixed and hybrid formulations, Finite Element Method (FEM) plus BEM. As an alternative to these methods, an easy time domain boundary condition, obtained from the well known consistent transmitting boundary developed by Waas for frequency domain analysis, can be applied to represent the reactions of the unbounded soil on the interest zone. The behaviour of this proposed boundary condition is studied when waves of different frequency to the one used for its obtention are acting on the physical edge of the model. As an application example,an analysis is made of the soil-structure interaction of a rigid strip foundation on a horizontal non-linear elastic layer on bed rock. The results obtained suggest the need of time domain solutions for this type of problem