19 resultados para Transverse planes

em Universidad Politécnica de Madrid


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Image analysis could be a useful tool for investigating the spatial patterns of apparent soil moisture at multiple resolutions. The objectives of the present work were (i) to define apparent soil moisture patterns from vertical planes of Vertisol pit images and (ii) to describe the scaling of apparent soil moisture distribution using fractal parameters.

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Image analysis could be a useful tool for investigating the spatial patterns of apparent soil moisture at multiple resolutions. The objectives of the present work were (i) to define apparent soil moisture patterns from vertical planes of Vertisol pit images and (ii) to describe the scaling of apparent soil moisture distribution using fractal parameters. Twelve soil pits (0.70 m long × 0.60 m width × 0.30 m depth) were excavated on a bare Mazic Pellic Vertisol. Six of them were excavated in April/2011 and six pits were established in May/2011 after 3 days of a moderate rainfall event. Digital photographs were taken from each Vertisol pit using a Kodak™ digital camera. The mean image size was 1600 × 945 pixels with one physical pixel ≈373 μm of the photographed soil pit. Each soil image was analyzed using two fractal scaling exponents, box counting (capacity) dimension (DBC) and interface fractal dimension (Di), and three prefractal scaling coefficients, the total number of boxes intercepting the foreground pattern at a unit scale (A), fractal lacunarity at the unit scale (Λ1) and Shannon entropy at the unit scale (S1). All the scaling parameters identified significant differences between both sets of spatial patterns. Fractal lacunarity was the best discriminator between apparent soil moisture patterns. Soil image interpretation with fractal exponents and prefractal coefficients can be incorporated within a site-specific agriculture toolbox. While fractal exponents convey information on space filling characteristics of the pattern, prefractal coefficients represent the investigated soil property as seen through a higher resolution microscope. In spite of some computational and practical limitations, image analysis of apparent soil moisture patterns could be used in connection with traditional soil moisture sampling, which always renders punctual estimates

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Transverse galloping is a type of aeroelastic instability characterised by large amplitude, low frequency oscillation of a structure in the direction normal to the mean wind direction. It normally appears in bodies with small stiffness and structural damping, provided the incident flow velocity is high enough. In the simplest approach transverse galloping can be considered as a one-degree-of-freedom oscillator subjected to aerodynamic forces, which in turn can be described by using a quasi-steady description. In this frame it has been demonstrated that hysteresis phenomena in transverse galloping is related to the existence of inflection points in the curve giving the dependence with the angle of attack of the aerodynamic coefficient normal to the incident flow. Aiming at experimentally checking such a relationship between these inflection points and hysteresis, wind tunnel experiments have been conducted. Experiments have been restricted to isosceles triangular cross-section bodies, whose galloping behaviour is well documented. Experimental results show that, according to theoretical predictions, hysteresis takes place at the angles of attack where there are inflection points in the lift coefficient curve, provided that the body is prone to gallop at these angles of attack.

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Las grandes regiones urbanas, capitales de los principales estados europeos, han elaborado recientemente instrumentos de planificación territorial con el que afrontar los retos de ordenación de unos espacios post-metropolitanos de estructuras y procesos cada vez más complejos. En ellos se tratan temas como el desarrollo local-regional y su articulación con la red de ciudades mundiales de la economía global. Un conjunto de estrategias territoriales son expuestas para afrontar la ordenación de las dinámicas metropolitanas actuales.

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Se denuncia el exceso de estudios sobre el riesgo de incendios y la escasez de estudios motodológicos sobre la ejecución de un proyecto de incendios y la exigencia de tener en cuenta a las comunidades afectadas.

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En este trabajo se realiza una propuesta de cálculo de riesgo sísmico en términos de daño físico para un escenario realista en Puerto Prínicpe (Haití). Los resultados del modelo propuesto se calibran con datos del sismo de enero de 2010.

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Evaluation is a new discipline and, whilst it has a long way to go, it has already made many advances. The growing importance of this field is exemplified in its increasing use in international organizations and public policies at a national, regional or local level, as well as in the exponential growth of evaluation societies around the world. The expansion of an ?evaluation culture? is explained by its significant utility by providing evidence to help decision-making and by providing a value system that establishes criteria and explicit standards by which to judge the interventions. These contributions have great relevance in the rural development field,thus, evaluation has become a great support for achieving sustainable development processes.

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This paper addresses two aspects of the behavior of interior reinforced concrete waffle flat plate?column connections under lateral loads: the share of the unbalanced moment between flexure and excentric shear, and the effect of the transverse beams. A non-linear finite element model (benchmark model) was developed and calibrated with the results of quasi-static cyclic tests conducted on a 3/5 scale specimen. First, from this numerical model, the portion cv of the unbalanced moment transferred by the excentricity of shear about the centroid of the critical sections defined by Eurocode 2 (EC-2) and by ACI 318-11 was calculated and compared with the share-out prescribed by these codes. It is found that while the critical section of EC-2 is consistent with the cv provided by this code, in the case of ACI 318-11, the value assigned to cv is far below (about 50% smaller) the actual one obtained with the numerical simulations. Second, from the benchmark model, seven additional models were developed by varying the depth D of the transverse beam over the thickness h of the plate. It was found that the ductility of the connection and the effective width of the plate can respectively be increased up to 50% and 10% by raising D/h to 2 and 1.5.

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We consider the finite radially symmetric deformation of a circular cylindrical tube of a homogeneous transversely isotropic elastic material subject to axial stretch, radial deformation and torsion, supported by axial load, internal pressure and end moment. Two different directions of transverse isotropy are considered: the radial direction and an arbitrary direction in planes normal locally to the radial direction, the only directions for which the considered deformation is admissible in general. In the absence of body forces, formulas are obtained for the internal pressure, and the resultant axial load and torsional moment on the ends of the tube in respect of a general strain-energy function. For a specific material model of transversely isotropic elasticity, and material and geometrical parameters, numerical results are used to illustrate the dependence of the pressure, (reduced) axial load and moment on the radial stretch and a measure of the torsional deformation for a fixed value of the axial stretch.

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En este trabajo se presenta una experiencia sobre la aplicación de diversas metodologías de apoyo cuyo objetivo principal es ofrecer a los alumnos de la Escuela Técnica Superior de Ingenieros Navales (ETSIN) de la Universidad Politécnica de Madrid (UPM) pertenecientes a un Plan de Estudios en extinción (Plan 2002) y del que ya han dejado e recibir clases presenciales en los primeros cursos, las herramientas adecuadas por medio de la plataforma virtual Moodle, para que puedan prepararse con garantías de éxito los exámenes finales de estas asignaturas, evitando cambiar obligatoriamente de plan de estudios. Se pretende dar a conocer a los profesores de las asignaturas sin docencia, la posibilidad de diseñar una metodología con tres niveles distintos de aprendizaje, solicitar el alta en el espacio virtual de enseñanza de aquellas asignaturas que no figuren en la plataforma virtual y poner a disposición del alumno el material necesario para lograr superar la asignatura. Los objetivos principales para el alumno son posibilitar el aprendizaje autónomo mediante recursos docentes y actividades alojados en la plataforma virtual, de forma que pueda estudiar la asignatura según el nivel de seguimiento que exija la misma.

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Se entiende como la necesidad o el deseo de los ciudadanos de moverse: es un derecho fundamental que tiene que garantizarse en igualdad de condiciones, sin diferencias por poder adquisitivo, condición física, género, edad, etc. Para que el derecho a la movilidad esté garantizado, las formas de acceder y de moverse han de cambiar porque vamos hacia un modelo de pérdida de calidad de vida en las ciudades. Es necesario incorporar criterios de sostenibilidad, cambiar los hábitos de los ciudadanos, basados en un conjunto de decisiones individuales que se toman diariamente. Una necesidad cotidiana como es ir a trabajar se ha convertido en un problema de insostenibilidad, al realizarse en muchos casos sin transporte alternativo al automóvil.

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Los planes de vivienda 1989-2012 En el periodo del estudio se aprobaron 6 planes de vivienda, aunque su coincidencia con varios cambios de gobierno (siete ministros diferentes) y tres cambios en el partido gobernante, produjo modificaciones en los planes o adelantos en el final de su periodo de aplicación (ver Fig. 1). Debido a los cambios de gobierno con distinto signo político, no se ejecutaron los programas de los años 1998 y 1999 (Plan 1996-1999) y 2005 (Plan 2002-2005).

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Transverse galloping is a type of aeroelastic instability characterized by oscillations perpendicular to wind direction, large amplitude and low frequency, which appears in some elastic two-dimensional bluff bodies when they are subjected to an incident flow, provided that the flow velocity exceeds a threshold critical value. Understanding the galloping phenomenon of different cross-sectional geometries is important in a number of engineering applications: for energy harvesting applications the interest relies on strongly unstable configurations but in other cases the purpose is to avoid this type of aeroelastic phenomenon. In this paper the aim is to analyze the transverse galloping behavior of rhombic bodies to understand, on the one hand, the dependence of the instability with a geometrical parameter such as the relative thickness and, on the other hand, why this cross-section shape, that is generally unstable, shows a small range of relative thickness values where it is stable. Particularly, the non-galloping rhombus-shaped prism?s behavior is revised through wind tunnel experiments. The bodies are allowed to freely move perpendicularly to the incoming flow and the amplitude of movement and pressure distributions on the surfaces is measured.

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The effect of porosity on the transverse mechanical properties of unidirectional fiber-reinforced composites is studied by means of computational micromechanics. The composite behavior is simulated by the finite element analysis of a representative volume element of the composite microstructure in which the random distribution of fibers and the voids are explicitly included. Two types of voids – interfiber voids and matrix voids – were included in the microstructure and the actual damage mechanisms in the composite, namely matrix and interface failure, were accounted for. It was found that porosity (in the range 1–5%) led to a large reduction in the transverse strength and the influence of both types of voids in the onset and propagation of damage throughout the microstructure was studied under transverse tension and compression. Finally, the failure locus of the composite lamina under transverse tension/compression and out-of-plane shear was obtained by means of computational micromechanics and compared with the predictions of Puck’s model and with experimental data available in the literature. The results show that the strength of composites is significantly reduced by the presence of voids