2 resultados para Induced polarization

em Universidad Politécnica de Madrid


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El objetivo del presente trabajo es evaluar los métodos de prospección geofísica que, además de servir para la caracterización hidrológica superficial en una finca de investigación vitivinícola, alcance la mayor resolutividad para la localización de contaminantes agrícolas. Con este fin se ha realizado, en primer lugar una revisión teórica de los métodos de prospección geofísica que, a priori, pueden considerarse más adecuados por cuanto reflejan en mayor medida las variaciones físicas derivadas de los efluentes químicos agrícolas de baja salinidad. Para alcanzar el objetivo del proyecto se ha realizado una serie de perfiles eléctricos de Tomografía Eléctrica y Polarización Inducida, además de un Sondeo de Resonancia Magnética Nuclear Se han obtenido mediante las técnicas tomográficas una caracterización del subsuelo para la determinación de la litología en profundidad con variaciones laterales bruscas, así como la porosidad de estas formaciones. La sección de cargabilidad (PI) ha permitido la detección de iones disueltos en el agua subterránea. Combinando estos resultados, con los obtenidos por Resonancia Magnética en la localización de las masas de agua y la permeabilidad de las rocas circundantes, somos capaces de determinar los agentes contaminantes así como su movilidad y distribución. La conclusión es que el método que resulta más efectivo para detección de contaminantes sería la combinación de todos ellos, puesto que son complementarios entre sí. ABSTRACT The main goal of this project is to evaluate the methods of geophysical prospection, also serving for surface hydrologic characterization in a research farm wine, reaching the most resoluteness for locating agricultural pollutants. To this end was made, first a theoretical review of geophysical prospecting methods that may be considered more suitable, a priori, as they reflect more closely the physical changes resulting from agricultural chemical measure low salinity. Reaching the objective of the project has made a series of Electrical Tomography profiles (ET) and Induced Polarization profiles (IP) also has conducted a drilling of Nuclear Magnetic Resonance (RMN). It was obtained by tomography characterization techniques for determining subsurface litho logy in depth and abrupt lateral variations, as well as the porosity of these formations. The chargeability Section (IP) has enabled detection of ions dissolved in groundwater. Combining these results with those that was obtained by Nuclear Magnetic Resonance with the location of groundwater body and the surrounding rocks permeability, we are able to determine the pollutants and the mobility and distribution of contaminants. The bottom line is the method more effective for detection of contaminants would be the combination of all of them because they are complementary in the environmental study.

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In this study, we present the optical properties of nonpolar GaN/(Al,Ga)N single quantum wells (QWs) grown on either a- or m-plane GaN templates for Al contents set below 15%. In order to reduce the density of extended defects, the templates have been processed using the epitaxial lateral overgrowth technique. As expected for polarization-free heterostructures, the larger the QW width for a given Al content, the narrower the QW emission line. In structures with an Al content set to 5 or 10%, we also observe emission from excitons bound to the intersection of I1-type basal plane stacking faults (BSFs) with the QW. Similarly to what is seen in bulk material, the temperature dependence of BSF-bound QW exciton luminescence reveals intra-BSF localization. A qualitative model evidences the large spatial extension of the wavefunction of these BSF-bound QW excitons, making them extremely sensitive to potential fluctuations located in and away from BSF. Finally, polarization-dependent measurements show a strong emission anisotropy for BSF-bound QW excitons, which is related to their one-dimensional character and that confirms that the intersection between a BSF and a GaN/(Al,Ga)N QW can be described as a quantum wire.