8 resultados para current terminating structure

em Universidad Politécnica de Madrid


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La estructura urbana de Madrid comenzó a dibujarse con los primeros asentamientos fortificados del siglo IX. Sus posteriores ampliaciones estuvieron acotadas por los sucesivos recintos que delimitaron los contornos de una capital en constante expansión. De carácter inicialmente defensivo, luego fiscal y sanitario, estas estructuras estuvieron articuladas en torno a las puertas de acceso a la Villa, estableciendo un sistema general de cerramiento y comunicación que permitiera el control de personas y mercancías en su tránsito hacia el interior de la ciudad. La modestia inicial con que las puertas y tapias del recinto edificado en tiempos de Felipe IV desempeñaron sus funciones de espaldas al exterior de la Villa fue remplazada por un creciente protagonismo, de carácter simbólico y ornamental, que trascendió a su propia arquitectura para inspirar algunas de las importantes transformaciones urbanas operadas en su entorno. Relacionada principalmente con el ideal ilustrado de embellecimiento de la ciudad, la renovación de sus puertas principales se completaba con la reedificación y regularización de sus cercas, y la conformación de nuevos paseos en las afueras de la capital, cuyo trazado vertebrará en buena medida la ocupación de la periferia y la consiguiente definición de la trama urbana del Madrid de hoy. El presente trabajo de investigación indaga sobre la significación urbana de las Reales Puertas de la Villa de Madrid, a partir de la revisión de su establecimiento en los sucesivos recintos de la capital, con especial atención a las transformaciones urbanas operadas en ella desde la definición de su último límite hasta la proyección futura del Madrid ampliado según el anteproyecto de Carlos Mª de Castro. La observación conjunta de las componentes arquitectónica y urbana de las puertas de la Villa de Madrid se ofrece a partir de un relato cronológico de los hechos, fundamentado en su justificación documental y la secuencia visual registrada en la cartografía histórica de la ciudad. La incorporación de aportaciones gráficas de nueva elaboración, de carácter y alcance diversos, proporciona una superposición espacio-temporal que posibilita la lectura comparada de las arquitecturas de las Reales Puertas de la Villa de Madrid y de las transformaciones urbanas operadas a partir de ellas, determinantes en gran medida la configuración de la ciudad actual. ABSTRACT Madrid’s current urban structure has its roots in the first fortified settlements of the IX century. Its subsequent expansions due to the capital’s constant growth were limited by successive enclosures, built originally as a defense mechanism, but later used for fiscal and sanitary purposes as well. The construction of these structures pivoted around the gates that gave access to the city, establishing an enclosure that allowed control of both people and goods on their way into the city. The gates and walls originally built by Felipe IV performed their purpose with a modesty that was later replaced by an increasing symbolic and ornamental prominence, eventually surpassing their own architecture to inspire profound urban changes around them. With the purpose of embellishing the city, the main gates were renovated, the walls were rebuilt and standardized, and new avenues were laid out outside the city. These changes dictated in large part the settling on the suburbs and the resulting configuration of Madrid’s urban scene as we know it today. This research explores the urban significance of the Royal Gates of Madrid through the study of the enclosures that marked the limits of the city. Special attention is given to the urban changes since the last enclosure was established through to Carlos Mª de Castro’s draft for Madrid’s future projection. The architectonic and urban facets of Madrid’s gates are examined simultaneously in a series of chronological events, based on relevant documentation and the graphical record found in Madrid’s historic cartography. This thesis includes new graphic contributions, which allow the comparison of the architecture of the Royal Gates of Madrid as they evolved in time and space. These documents are essential in order to understand the urban transformations that took place based on the Gates, having largely determined the city’s current configuration.

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This paper presents an analysis of the transport of electric current in a jet of an electrically conducting liquid discharging from a metallic tube into a gas or a vacuum, and subject to an electric field due to a high voltage applied between the tube and a far electrode. The flow, the surface charge and the electric field are computed in the current transfer region of the jet, where conduction current in the liquid becomes surface current due to the convection of electric charge accumulated at its surface. The electric current computed as a function of the flow rate of the liquid injected through the tube increases first as the square root of this flow rate, levels to a nearly constant value when the flow rate is increased and finally sets to a linear increase when the flow rate is further increased. The current increases linearly with the applied voltage at small and moderate values of this variable, and faster than linearly at high voltages. The characteristic length and structure of the current transfer region are determined. Order-of-magnitude estimates for jets which are only weakly stretched by the electric stresses are worked out that qualitatively account for some of the numerical results.

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Soil voids manifest the cumulative effect of local pedogenic processes and ultimately influence soil behavior - especially as it pertains to aeration and hydrophysical properties. Because of the relatively weak attenuation of X-rays by air, compared with liquids or solids, non-disruptive CT scanning has become a very attractive tool for generating three-dimensional imagery of soil voids. One of the main steps involved in this analysis is the thresholding required to transform the original (greyscale) images into the type of binary representation (e.g., pores in white, solids in black) needed for fractal analysis or simulation with Lattice?Boltzmann models (Baveye et al., 2010). The objective of the current work is to apply an innovative approach to quantifying soil voids and pore networks in original X-ray CT imagery using Relative Entropy (Bird et al., 2006; Tarquis et al., 2008). These will be illustrated using typical imagery representing contrasting soil structures. Particular attention will be given to the need to consider the full 3D context of the CT imagery, as well as scaling issues, in the application and interpretation of this index.

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Current development platforms for designing spoken dialog services feature different kinds of strategies to help designers build, test, and deploy their applications. In general, these platforms are made up of several assistants that handle the different design stages (e.g. definition of the dialog flow, prompt and grammar definition, database connection, or to debug and test the running of the application). In spite of all the advances in this area, in general the process of designing spoken-based dialog services is a time consuming task that needs to be accelerated. In this paper we describe a complete development platform that reduces the design time by using different types of acceleration strategies based on using information from the data model structure and database contents, as well as cumulative information obtained throughout the successive steps in the design. Thanks to these accelerations, the interaction with the platform is simplified and the design is reduced, in most cases, to simple confirmations to the “proposals” that the platform automatically provides at each stage. Different kinds of proposals are available to complete the application flow such as the possibility of selecting which information slots should be requested to the user together, predefined templates for common dialogs, the most probable actions that make up each state defined in the flow, different solutions to solve specific speech-modality problems such as the presentation of the lists of retrieved results after querying the backend database. The platform also includes accelerations for creating speech grammars and prompts, and the SQL queries for accessing the database at runtime. Finally, we will describe the setup and results obtained in a simultaneous summative, subjective and objective evaluations with different designers used to test the usability of the proposed accelerations as well as their contribution to reducing the design time and interaction.

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Many macroscopic properties: hardness, corrosion, catalytic activity, etc. are directly related to the surface structure, that is, to the position and chemical identity of the outermost atoms of the material. Current experimental techniques for its determination produce a “signature” from which the structure must be inferred by solving an inverse problem: a solution is proposed, its corresponding signature computed and then compared to the experiment. This is a challenging optimization problem where the search space and the number of local minima grows exponentially with the number of atoms, hence its solution cannot be achieved for arbitrarily large structures. Nowadays, it is solved by using a mixture of human knowledge and local search techniques: an expert proposes a solution that is refined using a local minimizer. If the outcome does not fit the experiment, a new solution must be proposed again. Solving a small surface can take from days to weeks of this trial and error method. Here we describe our ongoing work in its solution. We use an hybrid algorithm that mixes evolutionary techniques with trusted region methods and reuses knowledge gained during the execution to avoid repeated search of structures. Its parallelization produces good results even when not requiring the gathering of the full population, hence it can be used in loosely coupled environments such as grids. With this algorithm, the solution of test cases that previously took weeks of expert time can be automatically solved in a day or two of uniprocessor time.

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This paper provides partial results of an on-going research aimed at investigating the seismic response of reinforced concrete (RC) frames equipped with hysteretic-type energy dissipating devices (EDD). From a prototype RC frame structure designed only for gravity loads, a test model scaled in geometry to 2/5 was defined and built in the Laboratory of Structures of the University of Granada. Four EDDs were installed in the test model to provide the same seismic resistance than a conventional RC bare frame designed for sustain gravity and seismic loads following current codes. The test model with EDDs was subjected to several seismic simulations with the shaking table of Laboratory of structures of the University of Granada. The test results provide empirical evidences on the efficiency of the EDDs to prevent damage on the main frame and concentrating the inelastic deformations on the EDDs.

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A theoretical model for the steady-state response of anodic contactors that emit a plasma current Ii and collect electrons from a collisionless, unmagnetized plasma is presented. The use of a (kinetic) monoenergetic population for the attracted species, well known in passive probe theory, gives both accuracy and tractability to the theory. The monoenergetic population is proved to behave like an isentropic fluid with radial plus centripetal motion, allowing direct comparisons with ad hoc fluid models. Also, a modification of the original monoenergetic equations permits analysis of contactors operating in orbit-limited conditions. Besides that, the theory predicts that, only for plasma emissions above certain threshold current a presheath/double layer/core structure for the potential is formed (the core mode), while for emissions below that threshold, a plasma contactor behaves exactly as a positive-ion emitter with a presheath/sheath structure (the no-core mode). Ion emitters are studied as a particular case. Emphasis is placed on obtaining dimensionless charts and approximate asymptotic laws of the current-voltage characteristic.

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The recent establishment of a digital culture and society, together with current financial crisis and urgent energetic and climatic needs, has radically changed the architectural scene from the optimism of some years ago to a situation of uncertainty and huge social demands and challenges. In this context, it is suggested to rethink the role of structure in architecture, such as an enabler, a guide and a catalyst. The purpose of this paper is to present the economic, cultural and social context in which architecture develops nowadays. The method, to suggest a discussion on which role the structure may adopt in the architecture to come. The achievement, to highlight its potential to face current requirements and challenges.