6 resultados para temporal change

em Universidad Politécnica de Madrid


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The aim of the present work is to examine the differences between two groups of fencers with different levels of competition, elite and medium level. The timing parameters of the response reaction have been compared together with the kinetic variables which determine the sequence of segmented participation used during the lunge with a change in target during movement. A total of 30 male sword fencers participated, 13 elite and 17 medium level. Two force platforms recorded the horizontal component of the force and the start of the movement. One system filmed the movement in 3D, recording the spatial positions of 11 markers, while another system projected a mobile target over a screen. For synchronisation, an electronic signal enabled all the systems to be started simultaneously. Among the timing parameters of the reaction response, the choice reaction time (CRT) to the target change during the lunge was measured. The results revealed differences between the groups regarding the flight time, horizontal velocity at the end of the acceleration phase, and the length of the lunge, these being higher for the elite group, as well as other variables related to the temporal sequence of movement. No significant differences have been found in the simple reaction time or in CRT. According to the literature, the CRT appears to improve with sports practice, although this factor did not differentiate the elite from medium-level fencers. The coordination of fencing movements, that is, the right technique, constitutes a factor that differentiates elite fencers from medium-level ones.

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Landcover is subject to continuous changes on a wide variety of temporal and spatial scales. Those changes produce significant effects in human and natural activities. Maintaining an updated spatial database with the occurred changes allows a better monitoring of the Earth?s resources and management of the environment. Change detection (CD) techniques using images from different sensors, such as satellite imagery, aerial photographs, etc., have proven to be suitable and secure data sources from which updated information can be extracted efficiently, so that changes can also be inventoried and monitored. In this paper, a multisource CD methodology for multiresolution datasets is applied. First, different change indices are processed, then different thresholding algorithms for change/no_change are applied to these indices in order to better estimate the statistical parameters of these categories, finally the indices are integrated into a change detection multisource fusion process, which allows generating a single CD result from several combination of indices. This methodology has been applied to datasets with different spectral and spatial resolution properties. Then, the obtained results are evaluated by means of a quality control analysis, as well as with complementary graphical representations. The suggested methodology has also been proved efficiently for identifying the change detection index with the higher contribution.

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The crop simulation model AquaCrop, recently developed by FAO can be used for a wide range of purposes. However, in its present form, its use over large areas or for applications that require a large number of simulations runs (e.g., long-term analysis), is not practical without developing software to facilitate such applications. Two tools for managing the inputs and outputs of AquaCrop, named AquaData and AquaGIS, have been developed for this purpose and are presented here. Both software utilities have been programmed in Delphi v. 5 and in addition, AquaGIS requires the Geographic Information System (GIS) programming tool MapObjects. These utilities allow the efficient management of input and output files, along with a GIS module to develop spatial analysis and effect spatial visualization of the results, facilitating knowledge dissemination. A sample of application of the utilities is given here, as an AquaCrop simulation analysis of impact of climate change on wheat yield in Southern Spain, which requires extensive input data preparation and output processing. The use of AquaCrop without the two utilities would have required approximately 1000 h of work, while the utilization of AquaData and AquaGIS reduced that time by more than 99%. Furthermore, the use of GIS, made it possible to perform a spatial analysis of the results, thus providing a new option to extend the use of the AquaCrop model to scales requiring spatial and temporal analyses.

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El objetivo de esta tesis es proponer una metodología capaz de cuantificar la dinámica paisajística a lo largo del gradiente urbano – rural perteneciente al sur de la Región Metropolitana de Madrid y su entorno. Esta tesis se estructura en ocho capítulos, planos y anejos. El primero se refiere a los antecedentes tanto conceptuales como metodológicos. Los primeros se centran en los diversos enfoques existentes en relación al estudio de la dinámica paisajística, con el objetivo de encontrar los puntos en común existentes entre el enfoque del metabolismo social, el de la ecología del paisaje y el humanista, para obtener un diagnóstico que permita entender la complejidad de la realidad a la que esta Tesis se enfrenta. Los segundos se centran en los antecedentes de carácter metodológico que también desde diversos enfoques han abordado el análisis de la dinámica paisajística. El segundo capítulo se centra en los objetivos concretos derivados del objetivo general ya expresado, la tesis considera que para comprender y cuantificar la dinámica hay que identificar en primer lugar los procesos de transformación, como manifestación espacial de los factores socioeconómicos y naturales responsables en última instancia de la variación de los patrones paisajísticos existentes. En segundo lugar se identifican los patrones paisajísticos con el objetivo de analizar sus características espaciales y su evolución en el período analizado. Por último se identifican los procesos paisajísticos, es decir qué tipos de variaciones espaciales se producen en los patrones paisajísticos como consecuencia de los procesos de transformación identificados así como su pauta de distribución a lo largo del gradiente urbano ‐ rural. El tercer capítulo se dedica a la caracterización del ámbito de estudio, ésta se extiende al sur del límite del suelo urbano de la capital madrileña en el año 1990, comprende la totalidad de los municipios madrileños que contactan con los municipios castellano – manchegos que se encuentran en el área de influencia de la capital, abarcando el área 9.968 km2. El cuarto capítulo se centra en la metodología. Como material de partida se ha utilizado en la cartografía del Corine Land Cover y como herramienta de análisis se ha utilizado los Sistemas de Información Geográfica. En primer lugar se identifican los procesos de transformación, acaecidos en los períodos 1990 – 2000 y 2000 – 2006, mediante la aplicación de matrices de transición. Se han identificado cuatro tipos de procesos dinámicos: Urbanización, abandono, renaturalización y agrarización. Se ha realizado un análisis de indicadores compuestos lo que ha permitido identificar los tipos de patrones paisajísticos existentes a lo largo del gradiente urbano – rural. Del mismo modo se ha calculado la variación de los indicadores individuales para identificar los procesos paisajísticos mediante el análisis de indicadores compuestos que se produjeron en el período 1990 – 2000 y 2000 – 2006. En el quinto capítulo se aportan los resultados tanto de carácter cuantitativo como gráfico de los tres componentes analizados tanto de forma independiente como integrada. En el sexto capítulo se describen las conclusiones producto de la investigación realizada. En el séptimo capítulo se identifican qué líneas de investigación podrían desarrollarse en el futuro para continuar la línea de investigación iniciada con esta tesis. ABSTRACT The aim of this thesis was to propose a methodology to characterize landscape dynamics along the urban – rural gradient in the south Madrid area. It´s structured in eight chapters, planes and annexes: the first one describes previous research. Firstly to make a diagnosis of the effects of landscape dynamic we have performed an integrated analysis from social metabolism, landscape ecology and the humanistic point of view. Secondly we have focused on previous methodological research mainly developped by landscape ecology. The second chapter focuses on specific objectives derived from the general objective. The thesis considers that to understand and quantify landscape dynamics must first identify the transformation processes: spatial manifestation of natural and socioeconomics factors that induce the change of landscape patterns. Secondly landscape patterns have been identified in order to analyze their spatial characteristics and evolution. Finally the landscape processes have been identified, i.e. what kind of spatial variations cause changes in landscape patterns along urban – rural gradient. The third chapter describes the study area. The study area occupies 9968 km2. It covers the area to the south of Madrid’s 1990 urban land area, and takes in the southeast of the Madrid Autonomous Region plus all the municipal areas of the Castilla–La Mancha Autonomous Region directly influenced by the expansion of Madrid. The fourth chapter contains the methodology. To identify the changes in the landscape of the study area, the land cover data for the area held in the CORINE LandCover Project Database was examined. To characterize the transformations processes in the period 1990 ‐ 2000 and 2000 – 2006, transition matrices were constructed. We have identified four clear changes: Urbanization, renaturalization, abandonment and agrarianization. We have characterized landscape patterns using composite indicators by integrating individual spatial metrics. Similarly we have characterized landscape processes using composite indicators by integrating the variation of individual spatial metrics. Chapter fifth includes the results, both for each component and its final integration. The conclusions of this research have been described in the sixth chapter. The seventh chapter describes what kind of investigations could be done in the future.

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El objetivo de esta tesis es proponer una metodología capaz de cuantificar la dinámica paisajística a lo largo del gradiente urbano – rural perteneciente al sur de la Región Metropolitana de Madrid y su entorno. Esta tesis se estructura en ocho capítulos, planos y anejos. El primero se refiere a los antecedentes tanto conceptuales como metodológicos. Los primeros se centran en los diversos enfoques existentes en relación al estudio de la dinámica paisajística, con el objetivo de encontrar los puntos en común existentes entre el enfoque del metabolismo social, el de la ecología del paisaje y el humanista, para obtener un diagnóstico que permita entender la complejidad de la realidad a la que esta Tesis se enfrenta. Los segundos se centran en los antecedentes de carácter metodológico que también desde diversos enfoques han abordado el análisis de la dinámica paisajística. El segundo capítulo se centra en los objetivos concretos derivados del objetivo general ya expresado, la tesis considera que para comprender y cuantificar la dinámica hay que identificar en primer lugar los procesos de transformación, como manifestación espacial de los factores socioeconómicos y naturales responsables en última instancia de la variación de los patrones paisajísticos existentes. En segundo lugar se identifican los patrones paisajísticos con el objetivo de analizar sus características espaciales y su evolución en el período analizado. Por último se identifican los procesos paisajísticos, es decir qué tipos de variaciones espaciales se producen en los patrones paisajísticos como consecuencia de los procesos de transformación identificados así como su pauta de distribución a lo largo del gradiente urbano ‐ rural. El tercer capítulo se dedica a la caracterización del ámbito de estudio, ésta se extiende al sur del límite del suelo urbano de la capital madrileña en el año 1990, comprende la totalidad de los municipios madrileños que contactan con los municipios castellano – manchegos que se encuentran en el área de influencia de la capital, abarcando el área 9.968 km2. El cuarto capítulo se centra en la metodología. Como material de partida se ha utilizado en la cartografía del Corine Land Cover y como herramienta de análisis se ha utilizado los Sistemas de Información Geográfica. En primer lugar se identifican los procesos de transformación, acaecidos en los períodos 1990 – 2000 y 2000 – 2006, mediante la aplicación de matrices de transición. Se han identificado cuatro tipos de procesos dinámicos: Urbanización, abandono, renaturalización y agrarización. Se ha realizado un análisis de indicadores compuestos lo que ha permitido identificar los tipos de patrones paisajísticos existentes a lo largo del gradiente urbano – rural. Del mismo modo se ha calculado la variación de los indicadores individuales para identificar los procesos paisajísticos mediante el análisis de indicadores compuestos que se produjeron en el período 1990 – 2000 y 2000 – 2006. En el quinto capítulo se aportan los resultados tanto de carácter cuantitativo como gráfico de los tres componentes analizados tanto de forma independiente como integrada. En el sexto capítulo se describen las conclusiones producto de la investigación realizada. En el séptimo capítulo se identifican qué líneas de investigación podrían desarrollarse en el futuro para continuar la línea de investigación iniciada con esta tesis. ABSTRACT The aim of this thesis was to propose a methodology to characterize landscape dynamics along the urban – rural gradient in the south Madrid area. It´s structured in eight chapters, planes and annexes: the first one describes previous research. Firstly to make a diagnosis of the effects of landscape dynamic we have performed an integrated analysis from social metabolism, landscape ecology and the humanistic point of view. Secondly we have focused on previous methodological research mainly developped by landscape ecology. The second chapter focuses on specific objectives derived from the general objective. The thesis considers that to understand and quantify landscape dynamics must first identify the transformation processes: spatial manifestation of natural and socioeconomics factors that induce the change of landscape patterns. Secondly landscape patterns have been identified in order to analyze their spatial characteristics and evolution. Finally the landscape processes have been identified, i.e. what kind of spatial variations cause changes in landscape patterns along urban – rural gradient. The third chapter describes the study area. The study area occupies 9968 km2. It covers the area to the south of Madrid’s 1990 urban land area, and takes in the southeast of the Madrid Autonomous Region plus all the municipal areas of the Castilla–La Mancha Autonomous Region directly influenced by the expansion of Madrid. The fourth chapter contains the methodology. To identify the changes in the landscape of the study area, the land cover data for the area held in the CORINE LandCover Project Database was examined. To characterize the transformations processes in the period 1990 ‐ 2000 and 2000 – 2006, transition matrices were constructed. We have identified four clear changes: Urbanization, renaturalization, abandonment and agrarianization. We have characterized landscape patterns using composite indicators by integrating individual spatial metrics. Similarly we have characterized landscape processes using composite indicators by integrating the variation of individual spatial metrics. Chapter fifth includes the results, both for each component and its final integration. The conclusions of this research have been described in the sixth chapter. The seventh chapter describes what kind of investigations could be done in the future.

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There exist different ways for defining a welfare function. Traditionally, welfare economic theory foundation is based on the Net Present Value (NPV) calculation where the time dependent preferences of considered agents are taken into account. However, the time preferences, remains a controversial subject. Currently, the traditional approach employs a unique discount rate for various agents. Nevertheless, this way of discounting appears inconsistent with sustainable development. New research work suggests that the discount rate may not be a homogeneous value. The discount rates may change following the individual’s preferences. A significant body of evidence suggests that people do not behave following a constant discount rate. In fact, UK Government has quickly recognized the power of the arguments for time-varying rates, as it has done in its official guidance to Ministries on the appraisal of investments and policies. Other authors deal with not just time preference but with uncertainty about future income (precautionary saving). In a situation in which economic growth rates are similar across time periods, the rationale for declining social optimal discount rates is driven by the preferences of the individuals in the economy, rather than expectations of growth. However, these approaches have been mainly focused on long-term policies where intergenerational risks may appear. The traditional cost-benefit analysis (CBA) uses a unique discount rate derived from market interest rates or investment rates of return for discounting the costs and benefits of all social agents included in the CBA. However, recent literature showed that a more adequate measure of social benefit is possible by using different discount rates including inter-temporal preferences rate of users, private investment discount rate and intertemporal preferences rate of government. Actually, the costs of opportunity may differ amongst individuals, firms, governments, or society in general, as do the returns on savings. In general, the firms or operators require an investment rate linked to the current return on savings, while the discount rate of consumers-users depends on their time preferences with respect of the current and the future consumption, as well as society can take into account the intergenerational well-being, adopting a lower discount rate for today’s generation. Time discount rate of social actors (users, operators, government and society) places a lower value in a future gain, but the uncertainty about future income strongly determines the individual preferences. These time and uncertainty depends on preferences and should be integrated into a transport policy formulation that may have significant social impacts. The discount rate of a user cannot be the same than the operator’s discount rate. The preferences of both are different. In addition, another school of thought suggests that people, such as a social group, may have different attitudes towards future costs and benefits. Particularly, the users have different discount rates related to their income. Some research work tried to modify user discount rates using a compensating weight which represents the inverse of household income level. The inter-temporal preferences are a proxy of the willingness to pay during the time. Its consideration is important in order to make acceptable or not a policy or investment