82 resultados para 3-DIMENSIONAL INSTABILITIES
3-D modeling of perimeter recombination in GaAs diodes and its influence on concentrator solar cells
Resumo:
This paper describes a complete modelling of the perimeter recombination of GaAs diodes which solves most unknowns and suppresses the limitations of previous models. Because of the three dimensional nature of the implemented model, it is able to simulate real devices. GaAs diodes on two epiwafers with different base doping levels, sizes and geometries, namely square and circular are manufactured. The validation of the model is achieved by fitting the experimental measurements of the dark IV curve of the manufactured GaAs diodes. A comprehensive 3-D description of the occurring phenomena affecting the perimeter recombination is supplied with the help of the model. Finally, the model is applied to concentrator GaAs solar cells to assess the impact of their doping level, size and geometry on the perimeter recombination.
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One of the main concerns when conducting a dam test is the acute determination of the hydrograph for a specific flood event. The use of 2D direct rainfall hydraulic mathematical models on a finite elements mesh, combined with the efficiency of vector calculus that provides CUDA (Compute Unified Device Architecture) technology, enables nowadays the simulation of complex hydrological models without the need for terrain subbasin and transit splitting (as in HEC-HMS). Both the Spanish PNOA (National Plan of Aereal Orthophotography) Digital Terrain Model GRID with a 5 x 5 m accuracy and the CORINE GIS Land Cover (Coordination of INformation of the Environment) that allows assessment of the ground roughness, provide enough data to easily build these kind of models
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The linearized solution for the two-dimensional flow over an inlet of general form has been derived, assuming incompressible potential flow. With this theory suction forces at sharp inlet lips can be estimated and ideal inlets can be designed.
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The three-dimensional wall-bounded open cavity may be considered as a simplified geometry found in industrial applications such as leading gear or slotted flats on the airplane. Understanding the three-dimensional complex flow structure that surrounds this particular geometry is therefore of major industrial interest. At the light of the remarkable former investigations in this kind of flows, enough evidences suggest that the lateral walls have a great influence on the flow features and hence on their instability modes. Nevertheless, even though there is a large body of literature on cavity flows, most of them are based on the assumption that the flow is two-dimensional and spanwise-periodic. The flow over realistic open cavity should be considered. This thesis presents an investigation of three-dimensional wall-bounded open cavity with geometric ratio 6:2:1. To this aim, three-dimensional Direct Numerical Simulation (DNS) and global linear instability have been performed. Linear instability analysis reveals that the onset of the first instability in this open cavity is around Recr 1080. The three-dimensional shear layer mode with a complex structure is shown to be the most unstable mode. I t is noteworthy that the flow pattern of this high-frequency shear layer mode is similar to the observed unstable oscillations in supercritical unstable case. DNS of the cavity flow carried out at different Reynolds number from steady state until a nonlinear saturated state is obtained. The comparison of time histories of kinetic energy presents a clearly dominant energetic mode which shifts between low-frequency and highfrequency oscillation. A complete flow patterns from subcritical cases to supercritical case has been put in evidence. The flow structure at the supercritical case Re=1100 resembles typical wake-shedding instability oscillations with a lateral motion existed in the subcritical cases. Also, This flow pattern is similar to the observations in experiments. In order to validate the linear instability analysis results, the topology of the composite flow fields reconstructed by linear superposition of a three-dimensional base flow and its leading three-dimensional global eigenmodes has been studied. The instantaneous wall streamlines of those composited flows display distinguish influence region of each eigenmode. Attention has been focused on the leading high-frequency shear layer mode; the composite flow fields have been fully recognized with respect to the downstream wave shedding. The three-dimensional shear layer mode is shown to give rise to a typical wake-shedding instability with a lateral motions occurring downstream which is in good agreement with the experiment results. Moreover, the spanwise-periodic, open cavity with the same length to depth ratio has been also studied. The most unstable linear mode is different from the real three-dimensional cavity flow, because of the existence of the side walls. Structure sensitivity of the unstable global mode is analyzed in the flow control context. The adjoint-based sensitivity analysis has been employed to localized the receptivity region, where the flow is more sensible to momentum forcing and mass injection. Because of the non-normality of the linearized Navier-Stokes equations, the direct and adjoint field has a large spatial separation. The strongest sensitivity region is locate in the upstream lip of the three-dimensional cavity. This numerical finding is in agreement with experimental observations. Finally, a prototype of passive flow control strategy is applied.
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If only Fluid Mechanics aspects are considered, the configuration appearing in the floating zone technique for crystal growth can be modelled as a mass of liquid spanning between two solid rods. Besides, if now the influence of temperature gradients and heat flow are not considered, the simplest fluid model consists of an isothermal liquid mass of constant properties (density and surface tension) held by capillary forces between two solid disks placed a distance L apart: the so called liquid bridge. As it is well known, if both supporting disks were parallel, coaxial and of the same diameter, 2R, the volume of liquid, V, were equal to that of a cylinder of the same L and R (V=KR~L) and no body forces were acting on the liquid column, the fluid configuration (under these conditions of cylindrical shape) will become unstable when the distance between the disks equals the length of the circumference of the supporting disks (L=2KR, the so-called Rayleigh stability limit). One should be aware that the Rayleigh stability limit can be dramatically modified when the geometry differs from the above described cylinder (due to having non-coaxial disks, different diameter disks, liquid volume different from the cylindrical one, etc) or when other external effects like accelerations either axial or lateral are considered. In this paper the stability limits of liquid bridges considering different types of perturbations are reviewed.
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Esta investigación analiza la solución constructiva y dimensional de las fachadas del primer tramo de la Gran Vía madrileña y señala, entre otros aspectos, la aportación que supuso en el Sector de la Construcción español, la incorporación de perfilería metálica a la fábrica en los edificios del primer tramo de la calle, constituyendo el punto de partida del construir moderno del Madrid de principios del Siglo XX. Se han analizado sistemas y modulaciones que sintetizan, en un catálogo de fichas el modo constructivo de los primeros lustros del SXX. La metodología se ha centrado en el diseño de las fichas que describo a continuación: • Ficha de Histórica de datos generales (hitos históricos), esta ficha resume la historia de la construcción del edificio, indicando usos tanto originales como actuales, propiedad, fecha de construcción, e intervenciones constatadas. Especial significado para el desarrollo del trabajo tiene la definición de usos tanto originales como actuales. El uso del edificio se ha interpretado como la función. • Ficha dimensional, muestra medidas tanto en el eje X como en el Y, o en Z, en concreto intereje de huecos, medidas de entrepaños, ancho de huecos; medidas de suelo a suelo, medida del hueco más dintel; medidas de vuelos de balcones y/o miradores, y otros parámetros como porcentaje de huecos en fachada, frecuencia de aparición de los distintos huecos, su proporción alto ancho; parámetros que definen dimensionalmente los elementos que constituyen la fachada del edificio. Esta Ficha se acompaña del alzado de cada edificio acotado y de una fotografía actual. • Ficha de elementos y sistemas constructivos, en función del soporte (composición) y/o del material de acabado recogen datos obtenidos de la documentación gráfica y memorias existente en el archivo histórico y/o de documentación gráfica realizada por arquitectos que han intervenido en estos edificios. Tanto el contacto establecido con los arquitectos intervinientes, propietarios y empresas constructoras, como la localización de manuales de construcción fechados entre 1870 y 1925, han ayudado a definir a través de este catálogo de Fichas, los tipos (sistemas) constructivos y las modulaciones empleadas, una métrica que define con matemáticas la geometría del diseño, expresando además toda la carga de magia, encantamiento y siempre de modelo y orden que permanece en las fachadas de estos edificios. El desarrollo de estas técnicas denominadas en 1915 modernas han supuesto un cambio importante en el diseño, pues éste es un hecho diferencial en esta arquitectura con estructura metálica con respecto a los sistemas constructivos anteriores, permitiendo reducir el espesor del muro, y conseguir luces superiores tanto en huecos como en los vuelos de elementos salientes (balcones y miradores ) y consiguiendo un diseño acorde con la importancia del edificio. Una vez analizado el uso del edificio, sus dimensiones y los sistemas empleados, (siempre referidos al estudio de fachadas), se ha podido comprobar la relación entre Dimensión, Sistema y Función y los casos concretos en que esto sucede. La inspección visual y seguimiento de la calle han constatado la frecuencia de las labores de mantenimiento, reparación, o restauración en las fachadas de estos edificios. Estos conocimientos serán importantes de cara a intervenciones posteriores en el tiempo, quizá en los próximos 100 años. ABSTRACT Innovative techniques used in Spanish construction (for houses and buildings) emerged at the beginning of the 20th century. Reinforced steel profiles instead of traditional masonry was one of the most important innovations that was introduced. In order to make the most of the space available, masonry had to be as light as possible. This paper will examine the façades of these first buildings in “Gran Vía” Street and aims to show how they were constructed. Field work was carried out in order to analyze both the history of how the buildings were constructed and the construction and dimensional systems of the façade elements. Comprehending these building techniques and characteristics is the purpose of this Investigation. Some data sheets (cards) have been designed for finding out about historical information, uses, modulations and construction systems, in order to determine the relation between the Function, Dimension and System in these buildings. • The historical card shows date of construction, uses, propertys not only the original ones but nowadays, interventions special interest keeps the use or finality of the building. • The dimensional card shows measurements not only of axis X but also Y and Z, specifically the centre distance of openings, measurements of stretches of walls, the width of openings; floor to floor measurements, measurement of windows plus lintels; balcony overhangs and / or bay windows, and other parameters such as the percentage of façade openings, the frequency of the appearance of different openings, their proportion regarding height and width; parameters that dimensionally define the elements that make the façade of the building. This Card accompanies of the elevation of every measured building plus a current photograph. • Card of elements and building systems, depending on the support (composition) and / or the finish material that compiles information obtained from the existing graphic documentation and reports from historic files and / or graphic documentation drawn up by architects who have intervened in these buildings. The visual inspection and follow-up of the street confirm the frequency of maintenance work, repairs, or restoration of the façades of these buildings. Comprehension of these techniques and characteristics will enable future intervention, maybe in the next century.
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In a Finite Element (FE) analysis of elastic solids several items are usually considered, namely, type and shape of the elements, number of nodes per element, node positions, FE mesh, total number of degrees of freedom (dot) among others. In this paper a method to improve a given FE mesh used for a particular analysis is described. For the improvement criterion different objective functions have been chosen (Total potential energy and Average quadratic error) and the number of nodes and dof's of the new mesh remain constant and equal to the initial FE mesh. In order to find the mesh producing the minimum of the selected objective function the steepest descent gradient technique has been applied as optimization algorithm. However this efficient technique has the drawback that demands a large computation power. Extensive application of this methodology to different 2-D elasticity problems leads to the conclusion that isometric isostatic meshes (ii-meshes) produce better results than the standard reasonably initial regular meshes used in practice. This conclusion seems to be independent on the objective function used for comparison. These ii-meshes are obtained by placing FE nodes along the isostatic lines, i.e. curves tangent at each point to the principal direction lines of the elastic problem to be solved and they should be regularly spaced in order to build regular elements. That means ii-meshes are usually obtained by iteration, i.e. with the initial FE mesh the elastic analysis is carried out. By using the obtained results of this analysis the net of isostatic lines can be drawn and in a first trial an ii-mesh can be built. This first ii-mesh can be improved, if it necessary, by analyzing again the problem and generate after the FE analysis the new and improved ii-mesh. Typically, after two first tentative ii-meshes it is sufficient to produce good FE results from the elastic analysis. Several example of this procedure are presented.