20 resultados para chois modal


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This study analyses the differences between two calculation models for guardrails on building sites that use wooden boards and tubular steel posts. Wood was considered an isotropic material in one model and an orthotropic material in a second model. The elastic constants of the wood were obtained with ultrasound. Frequencies and vibration modes were obtained for both models through linear analysis using the finite element method. The two models were experimentally calibrated through operational modal analysis. The results obtained show that for the three types of wood under analysis, the model which considered them as an orthotropic material fitted the experimental results better than the model which considered them as an isotropic material.

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Una estructura vibra con la suma de sus infinitos modos de vibración, definidos por sus parámetros modales (frecuencias naturales, formas modales y coeficientes de amortiguamiento). Estos parámetros se pueden identificar a través del Análisis Modal Operacional (OMA). Así, un equipo de investigación de la Universidad Politécnica de Madrid ha identificado las propiedades modales de un edificio de hormigón armado en Madrid con el método Identificación de los sub-espacios estocásticos (SSI). Para completar el estudio dinámico de este edificio, se ha desarrollado un modelo de elementos finitos (FE) de este edificio de 19 plantas. Este modelo se ha calibrado a partir de su comportamiento dinámico obtenido experimentalmente a través del OMA. Los objetivos de esta tesis son; (i) identificar la estructura con varios métodos de SSI y el uso de diferentes ventanas de tiempo de tal manera que se cuantifican incertidumbres de los parámetros modales debidos al proceso de estimación, (ii) desarrollar FEM de este edificio y calibrar este modelo a partir de su comportamiento dinámico, y (iii) valorar la bondad del modelo. Los parámetros modales utilizados en esta calibración han sido; espesor de las losas, densidades de los materiales, módulos de elasticidad, dimensiones de las columnas y las condiciones de contorno de la cimentación. Se ha visto que el modelo actualizado representa el comportamiento dinámico de la estructura con una buena precisión. Por lo tanto, este modelo puede utilizarse dentro de un sistema de monitorización estructural (SHM) y para la detección de daños. En el futuro, podrá estudiar la influencia de los agentes medioambientales, tales como la temperatura o el viento, en los parámetros modales. A structure vibrates according to the sum of its vibration modes, defined by their modal parameters (natural frequencies, damping ratios and modal shapes). These parameters can be identified through Operational Modal Analysis (OMA). Thus, a research team of the Technical University of Madrid has identified the modal properties of a reinforced-concrete-frame building in Madrid using the Stochastic Subspace Identification (SSI) method and a time domain technique for the OMA. To complete the dynamic study of this building, a finite element model (FE) of this 19-floor building has been developed throughout this thesis. This model has been updated from its dynamic behavior identified by the OMA. The objectives of this thesis are to; (i) identify the structure with several SSI methods and using different time blocks in such a way that uncertainties due to the modal parameter estimation are quantified, (ii) develop a FEM of this building and tune this model from its dynamic behavior, and (iii) Assess the quality of the model, the modal parameters used in this updating process have been; thickness of slabs, material densities, modulus of elasticity, column dimensions and foundation boundary conditions. It has been shown that the final updated model represents the structure with a very good accuracy. Thus, this model might be used within a structural health monitoring framework (SHM). The study of the influence of changing environmental factors (such as temperature or wind) on the model parameters might be considered as a future work.

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A novel tunable liquid crystal microaxicon array is proposed and experimentally demonstrated. The proposed structure is capable of generating tunable axicons (thousands of elements) of micrometric size, with simple control (four control voltages) and low voltage, and is totally reconfigurable. Depending on the applied voltages, control over the diameter, as well as the effective wedge angle, can be achieved. Controls over the diameter ranging from 107 to 77 μm have been demonstrated. In addition, a control over the phase profile tunability, from 12π to 24π radians, has been demonstrated. This result modifies the effective cone angle. The diameter tunability, as well the effective cone angle, results in a control over the nondiffractive Bessel beam distance. The RMS wavefront deviation from the ideal axicon is only λ∕3. The proposed device has several advantages over the existing microaxicon arrays, including being simple having a low cost. The device could contribute to developing new applications and to reducing the fabrication costs of current devices.

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Operational Modal Analysis consists on estimate the modal parameters of a structure (natural frequencies, damping ratios and modal vectors) from output-only vibration measurements. The modal vectors can be only estimated where a sensor is placed, so when the number of available sensors is lower than the number of tested points, it is usual to perform several tests changing the position of the sensors from one test to the following (multiple setups of sensors): some sensors stay at the same position from setup to setup, and the other sensors change the position until all the tested points are covered. The permanent sensors are then used to merge the mode shape estimated at each setup (or partial modal vectors) into global modal vectors. Traditionally, the partial modal vectors are estimated independently setup by setup, and the global modal vectors are obtained in a postprocess phase. In this work we present two state space models that can be used to process all the recorded setups at the same time, and we also present how these models can be estimated using the maximum likelihood method. The result is that the global mode shape of each mode is obtained automatically, and subsequently, a single value for the natural frequency and damping ratio of the mode is computed. Finally, both models are compared using real measured data.

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En muchas ocasiones se ha establecido una crítica sobre la excesiva disposicionalidad estética del arquitecto: el abuso subjetivista, un innatismo desligado del entorno socioambiental o su desafección hacia las necesidades y los requerimientos pertinentes del usuario final, buscando, principalmente, la objetivación cultural como expresión personal e individualista. Criticas que responden a un malestar persistente, que subyace a la práctica arquitectónica. En otras ocasiones se han ideado y propuesto tentativas o aproximaciones para la corrección y regulación de dicho “exceso”. En busca de la “pretendida objetividad”, éstas han recurrido a un pasado prístino, a una tradición inconsciente, colectiva e impersonal, a la ausencia de autoría, a lo artesanal y a lo vernáculo. También hacia un futuro tecnocrático: al mesianismo basado en la máquina, la ciencia, los métodos y el progreso tecnológico. La búsqueda de un lenguaje compartido, de un diseño sistemático y de una adecuación funcional han establecido nuevos excesos –repertoriales-, relegando la creatividad y la concepción estética a un plano casi inexistente, subordinándolo a variables de diseño externas a la autoría y la expresión subjetiva del diseñador. Esta tensión se ha saldado en una pugna de binomios categoriales que reducen la realidad a un dualismo aporético y contrapuesto, difícilmente superable. El propósito articulatorio de dichas posturas, en modelos ontológicos integrales, permite la incorporación de dichas categorías bajo estructuras y ensamblajes que despliegan los modos de relación, mediación y producción arquitectónicas. Estos ensamblajes combinan los distintos agentes –disposicionalidades- y sus repertorios en cada una de las fases del proceso arquitectónico, construyendo modos de acción y relación en base a los acoplamientos diferenciales, que devienen en técnicas y dinámicas de producción arquitectónica. Cada modo integrará diversas variables en base a los modelos propuestos -estratos, períodos y polos- y a la elección intencional –“situada”- de cada práctica: la Autonomía Modal Arquitectónica. El producto final de cada modo –o ensamblaje- será inconmensurable, estableciendo sistemas y métodos diversos para la práctica estética, sin que por ello esté garantizado el valor o éxito del resultado. ABSTRACT On many occasions an aesthetic criticism of the excessive disposition of the architect´s subjectivist abuse, innate posture detached from socioenvironmental issues or disaffection regarding the needs and requirements of who -or what- will finally use it has been brought up mainly in pursuit of a cultural objectification as a personal expression and an individualistic one. It is a criticism which goes hand in hand with a persistent uneasiness which is interwoven in the architectural practice. On other occasions we have seen ideas, attempts and approaches developed and proposed in order to correct, improve or adjust that so-called “excess”. In the search for this " expected objectivity" theorists have resorted to delving into a pristine past, an unconscious tradition both collective and personal, to the absence of authorship, regarding craft and vernacular. The pursuit of a common language, a systematic design and a functional adequacy has established new excesses -repertoires-, leaving behind creativity and aesthetic conception at an almost nonexistent level and subordinating it to variables outside the authoring design and subjective expression of the designer. This tension has resulted in a conflict between categorical binomial, which reduces reality to an aporetic and opposed dualism which is not easily overcome. The purpose of such articulatory positions in comprehensive ontological modals allows for the incorporation of those categories under structures and assemblies which display and unfold different models of relationship, mediation and production of architecture. These assemblies combine different agents - disposition - and their repertoires in each of the phases of the architectural process, building actions and relational modes based on the differential couplings, which become techniques and dynamics in architectural production. Each mode will integrate several variables within the proposed ontological models - strata, periods and poles - based on an intentional choice –“situated knowledge”- of each practice: Architectural Modal Autonomy. The final product of each mode -or assembly- will be immeasurable, establishing different systems and methods for aesthetic practice without the value or success of the outcome ever being guaranteed.