872 resultados para Hydrologic Modeling Catchment and Runoff Computations


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Conceptualization of groundwater flow systems is necessary for water resources planning. Geophysical, hydrochemical and isotopic characterization methods were used to investigate the groundwater flow system of a multi-layer fractured sedimentary aquifer along the coastline in Southwestern Nicaragua. A geologic survey was performed along the 46 km2 catchment. Electrical resistivity tomography (ERT) was applied along a 4.4 km transect parallel to the main river channel to identify fractures and determine aquifer geometry. Additionally, three cross sections in the lower catchment and two in hillslopes of the upper part of the catchment were surveyed using ERT. Stable water isotopes, chloride and silica were analyzed for springs, river, wells and piezometers samples during the dry and wet season of 2012. Indication of moisture recycling was found although the identification of the source areas needs further investigation. The upper-middle catchment area is formed by fractured shale/limestone on top of compact sandstone. The lower catchment area is comprised of an alluvial unit of about 15 m thickness overlaying a fractured shale unit. Two major groundwater flow systems were identified: one deep in the shale unit, recharged in the upper-middle catchment area; and one shallow, flowing in the alluvium unit and recharged locally in the lower catchment area. Recharged precipitation displaces older groundwater along the catchment, in a piston flow mechanism. Geophysical methods in combination with hydrochemical and isotopic tracers provide information over different scales and resolutions, which allow an integrated analysis of groundwater flow systems. This approach provides integrated surface and subsurface information where remoteness, accessibility, and costs prohibit installation of groundwater monitoring networks.

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SRAM-based FPGAs are sensitive to radiation effects. Soft errors can appear and accumulate, potentially defeating mitigation strategies deployed at the Application Layer. Therefore, Configuration Memory scrubbing is required to improve radiation tolerance of such FPGAs in space applications. Virtex FPGAs allow runtime scrubbing by means of dynamic partial reconfiguration. Even with scrubbing, intra-FPGA TMR systems are subjected to common-mode errors affecting more than one design domain. This is solved in inter-FPGA TMR systems at the expense of a higher cost, power and mass. In this context, a self-reference scrubber for device-level TMR system based on Xilinx Virtex FPGAs is presented. This scrubber allows for a fast SEU/MBU detection and correction by peer frame comparison without needing to access a golden configuration memory

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Soil erosion is a complex phenomenon involving the detachment and transport of soil particles, storage and runoff of rainwater, and infiltration. The relative magnitude and importance of these processes depends on several factors being one of them surface micro-topography, usually quanti[U+FB01]ed trough soil surface roughness (SSR). SSR greatly affects surface sealing and runoff generation, yet little information is available about the effect of roughness on the spatial distribution of runoff and on flow concentration. The methods commonly used to measure SSR involve measuring point elevation using a pin roughness meter or laser, both of which are labor intensive and expensive. Lately a simple and inexpensive technique based on percentage of shadow in soil surface image has been developed to determine SSR in the field in order to obtain measurement for wide spread application. One of the first steps in this technique is image de-noising and thresholding to estimate the percentage of black pixels in the studied area. In this work, a series of soil surface images have been analyzed applying several de-noising wavelet analysis and thresholding algorithms to study the variation in percentage of shadows and the shadows size distribution

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Advances in electronics nowadays facilitate the design of smart spaces based on physical mash-ups of sensor and actuator devices. At the same time, software paradigms such as Internet of Things (IoT) and Web of Things (WoT) are motivating the creation of technology to support the development and deployment of web-enabled embedded sensor and actuator devices with two major objectives: (i) to integrate sensing and actuating functionalities into everyday objects, and (ii) to easily allow a diversity of devices to plug into the Internet. Currently, developers who are applying this Internet-oriented approach need to have solid understanding about specific platforms and web technologies. In order to alleviate this development process, this research proposes a Resource-Oriented and Ontology-Driven Development (ROOD) methodology based on the Model Driven Architecture (MDA). This methodology aims at enabling the development of smart spaces through a set of modeling tools and semantic technologies that support the definition of the smart space and the automatic generation of code at hardware level. ROOD feasibility is demonstrated by building an adaptive health monitoring service for a Smart Gym.

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Soil erosion is a complex phenomenon involving the detachment and transport of soil particles, storage and runoff of rainwater, and infiltration. The relative magnitude and importance of these processes depends on several factors being one of them surface microtopography, usually quantified trough soil surface roughness (SSR). Surface soil porosity and SSR can be altered by tillage operation. Even though the surface porosity is an important parameter of a tilled field, however, no practical technique for rapid and non-contact measurement of surface porosity has been developed yet.

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Este proyecto es una documentación sintetizada, para los alumnos de Grado en Imagen y Sonido, de todos los conceptos que conciernen a la asignatura Sistemas Audiovisuales. No obstante puede servir para todo aquel al que le interese la materia, sin ser necesariamente estudiante. El material se basa en la recopilación de libros de diversos autores, páginas web y catálogos de productos de empresas del sector audiovisual. Se intenta con esto incentivar en el auto-aprendizaje, proporcionando multitud de fuentes de información. El documento se ha dividido en dos bloques temáticos correspondientes a los temas: 1- Dispositivos de captación y reproducción de sonido e imagen. 2- Señales y formatos de audio y vídeo. Aunque no es tema de este proyecto pero si de la asignatura hay que nombrar el tercer bloque temático, Introducción a los sistemas de transmisión de audio y vídeo. Dado que hay suficiente documentación de estudio sobre éste se ha optado por no incluirlo. Cada bloque temático a su vez contiene cuatro unidades didácticas. Cada unidad se ha desarrollado de manera independiente a las demás, es decir, que cada unidad puede ser estudiada sin necesidad de recurrir a otras unidades para comprender la/s que interesa/n. Por otro lado hay que remarcar que todos los capítulos tienen relación entre sí. La documentación se complementa al final de cada unidad didáctica con un test de evaluación que a su vez ha sido publicado dentro del entorno de Moodle en la página correspondiente a la asignatura. Para ello se ha accedido a esta plataforma on line con el rol de editor de contenido. Para la elaboración de los cuestionarios se han tomado los conceptos clave de cada unidad didáctica, de esta manera los alumnos pueden saber si han comprendido lo que se explica en la documentación y mejorar así sus conocimientos. Para la redacción y estructuración de cada unidad didáctica, así como el documento en general, se ha cogido como referencia la Taxonomía de objetivos de la Educación o Taxonomía de Bloom. Dado que el dominio cognitivo del lector se encuadra dentro del ‘nivel de comprensión’, el documento no resulta tedioso en su estudio. No obstante introduce al alumno en los temas más importantes de la materia, proporcionando una base sólida de conocimiento en sistemas audiovisuales. Es precisamente el interés en hacer lo más accesible posible este documento lo que ha dificultado su elaboración, ya que el área de estudio es muy extensa y es difícil sintetizar sin eliminar contenido importante. No obstante para hacer más fiable el documento se ha seguido las pautas temáticas y argumentales marcadas por el Departamento Ingeniería Audiovisual y Comunicaciones de la Escuela Universitaria de Ingeniería Técnica de Telecomunicaciones de la Universidad Politécnica de Madrid verificando cada uno de los capítulos con los profesores de este departamento. Al tratarse de un proyecto con fines académicos, el texto se ha apoyado por figuras, esquemas, tablas, anexos y desarrollo de ecuaciones para hacer más comprensible lo que se expone. Algunos de estas informaciones se incluyen en inglés y no se ha creído conveniente su traducción dado que gran parte de la información que encontrará el alumno a lo largo de la carrera vendrá escrita en este idioma. Por último hay que decir al lector que es conveniente, pero no necesario, tener ciertas nociones de cálculo, álgebra, ondas y circuitos para seguir con fluidez lo que a continuación se expone. ABSTRACT. This project concerns all the concepts and topics of the subject Audiovisual Systems. It has been created for students of Sound and Image Degree, however everyone who's interested in this subject could use it even if isn’t a student. The document is divided into two main thematic sections corresponding to the topics: 1- Catchment and reproduction devices of sound and image. 2- Audio and video signals and formats. Even if this subject it isn’t mention in this project, it’s very important to quote a third important thematic of this block , such as Introduction about Transmission of Audio and Video System. Since there is enough study-documentation about this topic, it has been taken the choice to don’t integrate this chapter in this project. Every thematic block in this project is divided in chapters that have been developed in an independent way: that’s means that for each unit it is not necessary to look forward to other chapters in this project On the other hand it is necessary to emphasize that all the chapters are related one to each other. Every didactic unit and chapter ends with an evaluation test , that has been published with Moodle System using a content editor account. Those exercises will help in a easy way the student to improve his skills and his own ability. Collection of books of various authors, websites and product catalogs of audiovisual companies are used in this document and are included for stimulate the curiosity of the student. The key concepts of each unit have been used for making tests, so in this way students could be able to know if they have understood what the documentation explains and improve his skills. For writing and building each didactic unit, such as in the general document, it has been taken reference from Bloom’s Taxonomy. Since the skills and competence of the student are concentrated in the ‘comprehension level’, it will not be very complicated or hard to study. In spite of everything, all of thematic treated and discussed in documentation gives a solid knowledge of topic about audiovisual systems. The most difficult thing of realizing this document it was to take very complex topic and try to explain them as simply as possible In spite of everything for making this document as much accurated as possible it has been taken as point of reference rules established by the Department of Audiovisual Engineering & Communications of University School of Telecommunications Engineering (EUITT-UPM). This Project reach academic goal, for this reason in this document images, tables, annexes and outlines are enclosed in this document for an easier compression. At last, it’s necessary to say that each lector must have necessary a basic knowledge about arithmetic, calculus, waves and electronic circuits in the order that he could follow in a fluently way what the documentation set out.

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In previous BEM Conferences , the concepts, developments and organisation of the p-adaptive philosophy have been presented by the authors, as well as some interesting features of the hierarchisation of the solution, accuracy estimates and numerical computations optimization. This current paper is devoted to presenting some new developments and aplications in linear elastostatics, with emphasis on: a ) Efficient computation of influence coefficients, b) Efficient evaluation of the residuals by taking advantage of the hierarchy of the interpolation functions and e) New results regarding estimators and convergence ratios.In addition, several practical examples will be shown and discussed in order to point out the advantages of the method .

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Software Product Line Engineering has significant advantages in family-based software development. The common and variable structure for all products of a family is defined through a Product-Line Architecture (PLA) that consists of a common set of reusable components and connectors which can be configured to build the different products. The design of PLA requires solutions for capturing such configuration (variability). The Flexible-PLA Model is a solution that supports the specification of external variability of the PLA configuration, as well as internal variability of components. However, a complete support for product-line development requires translating architecture specifications into code. This complex task needs automation to avoid human error. Since Model-Driven Development allows automatic code generation from models, this paper presents a solution to automatically generate AspectJ code from Flexible-PLA models previously configured to derive specific products. This solution is supported by a modeling framework and validated in a software factory.

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Virtual reality (VR) techniques to understand and obtain conclusions of data in an easy way are being used by the scientific community. However, these techniques are not used frequently for analyzing large amounts of data in life sciences, particularly in genomics, due to the high complexity of data (curse of dimensionality). Nevertheless, new approaches that allow to bring out the real important data characteristics, arise the possibility of constructing VR spaces to visually understand the intrinsic nature of data. It is well known the benefits of representing high dimensional data in tridimensional spaces by means of dimensionality reduction and transformation techniques, complemented with a strong component of interaction methods. Thus, a novel framework, designed for helping to visualize and interact with data about diseases, is presented. In this paper, the framework is applied to the Van't Veer breast cancer dataset is used, while oncologists from La Paz Hospital (Madrid) are interacting with the obtained results. That is to say a first attempt to generate a visually tangible model of breast cancer disease in order to support the experience of oncologists is presented.