999 resultados para Terrazas (Geología)


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El proyecto desarrolla el modelo de negocio para la creación de una empresa de voladuras asentada en Australia. Se han analizado todos los puntos considerados estratégicos para poder llevar a cabo esta labor, esto es un estudio tecnológico, comercial y financiero que constituyen este plan de negocios. ABSTRACT The main object of this project is to develop a document which contemplates a model for the establishment of a blasting company in Australia. To do so in this text we have analyzed the considered strategic points that will help us in this hard effort. All this is included in a technological, commercial and financial study that makes up a business plan

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El presente documento evalúa la Cuenca Alta del Guadalquivir en busca de posibles estructuras viables como almacenes de CO2, tanto técnica como económicamente. Se lleva a cabo la selección de seis posibles estructuras, de las cuales solo tres han resultado viables atendiendo a criterios técnicos y socio-económicos. De estas tres, se evalúa la viabilidad económica de la de mayor capacidad, obteniendo como resultado que la capacidad estimada es demasiado baja para que sea rentable su uso como almacén de CO2 a nivel comercial en una industria tipo de la Unión Europea. Para ello nos basamos principalmente en la Ley 40/2010 que regula el almacenamiento geológico en nuestro país, el informe GeoCapacity elaborado por el IGME, atlas elaborados por el Departamento de Energía de los Estados Unidos (DOE), y en diversos documentos de carácter económico publicados a nivel Europeo. Este proyecto, está incluido dentro de la Cátedra TecFutura, y forma parte del proyecto AVANZACO2. Por tanto, ha contado con la colaboración de las empresas implicadas en dicho proyecto, Sacyr Vallehermoso y Gessal así como con investigadores de la UPM. En relación con dicho proyecto, se procesaron los datos obtenidos mediante la herramienta informática CO2SITEASSES. ABSTRACT This paper evaluates the Upper basin of the Guadalquivir in the search of viable structures for CO2 storage, both technically and economically. The selection of six possible structures has been made, of which only three have proved to be viable attending to technical an socio-economic criteria. Of these three, we evaluate the economic viability of the larger capacity. In result, the estimated capacity is too low to make it profitable for a commercial use. In order to do this, we rely primarily on the Law 40/2010, which regulate the geological storage in our country, the report GeoCapacity, prepared by the IGME, atlas prepared by de Department of Energy of the United States (DOE) and various economic papers published in Europe. This project is included in the “Cátedra TecFutura” and is part of AVANZACO2 project. Therefore it has enjoyed the cooperation of the companies involved in the project, Sacyr Vallehermoso and Gessal, as well as UPM researchers. Related to this project, the obtained data were processed using the software CO2SITEASSES

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El desarrollo de modelos predictivos de retroceso de acantilados costeros se encuentra limitado desde el punto de vista geomorfológico debido a la complejidad e interacción de los procesos de desarrollo espacio-temporal que tienen lugar en la zona costera. Los códigos de cálculo existentes en la actualidad incorporan modelos probabilísticos para resolver la estabilidad geomecánica de los materiales. Éstos pueden reproducir tasas de recesión históricas; sin embargo, el comportamiento bajo condiciones variables (cambio climático) no tiene por qué ser el mismo. Se presenta un modelo de proceso-respuesta de retroceso de acantilados costeros que incorpora el comportamiento geomecánico de costas compuestas por tills, incluye la acción protectora de los derrubios presentes al pie del acantilado frente a los procesos erosivos y permite evaluar el efecto del ascenso del nivel medio del mar asociado al cambio climático. Para ello, se acoplan la dinámica marina: nivel medio del mar, mareas y oleaje; con la evolución del terreno: erosión, desprendimiento rocoso y formación de talud de derrubios. La erosión del acantilado se calcula en función del nivel del mar, de las condiciones del oleaje incidente, de la pendiente de la plataforma rocosa y de la resistencia del material rocoso afectado en cada ciclo de marea. Al finalizar cada ciclo, se evalúa la ruptura del acantilado según un criterio geomecánico de roturas por vuelco y en caso de rotura, se genera un talud de derrubios al pie del mismo. El modelo ha sido validado frente a datos reales en la costa de Holderness, Yorkshire, Reino Unido. Los resultados obtenidos presentan un importante avance en los modelos de recesión costera, especialmente en su relación con las condiciones geomecánicas del medio y su respuesta ante condiciones variables del nivel medio del mar producidas por el cambio climático.

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El retroceso de las costas acantiladas es un fenómeno muy extendido sobre los litorales rocosos expuestos a la incidencia combinada de los procesos marinos y meteorológicos que se dan en la franja costera. Este fenómeno se revela violentamente como movimientos gravitacionales del terreno esporádicos, pudiendo causar pérdidas materiales y/o humanas. Aunque el conocimiento de estos riesgos de erosión resulta de vital importancia para la correcta gestión de la costa, su predicción es complicada. Los modelos de predicción publicados son escasos y con importantes inconvenientes: extrapolación, extienden información registros históricos; empíricos, sobre registros históricos estudian respuesta al cambio de un parámetro; estocásticos, determinan la cadencia y magnitud de los eventos futuros extrapolando las distribuciones de probabilidad extraídas de catálogos históricos; proceso-respuesta, de estabilidad y propagación del error inexplorada; en EDPs, computacionalmente costosos y poco exactos. En este trabajo se desarrolla un modelo combinado de proceso-respuesta basado en incorporar un balance de fuerzas de los mecanismos que actúan sobre el proceso erosivo en el frente del acantilado. El modelo simula la evolución espacio-temporal de un perfil-2D del acantilado, formado por materiales heterogéneos, acoplando la dinámica marina con la evolución del terreno en cada periodo de marea. Integra en cada periodo una función de erosión, dependiente de la pendiente de la zona afectada, que se desplaza sobre la onda de marea. Se ha estudiado el error de discretización del modelo y su propagación en el tiempo a partir de las soluciones exactas para los dos primeros periodos de marea para diferentes aproximaciones numéricas en la integración y de la pendiente. Los resultados obtenidos han permitido justificar las discretizaciones que minimizan el error y los métodos de aproximación más adecuados.

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A geochemical model of an urban environment is presented in which multielemental tracers are used to characterise the circulation of trace elements in particulate matter_atmospheric aerosol, street dust and urban soil, within a city.

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We use multifractal analysis (MFA) to investigate how the Rényi dimensions of the solid mass and the pore space in porous structures are related to each other. To our knowledge, there is no investigation about the relationship of Rényi or generalized dimensions of two phases of the same structure.

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In this paper we present a tool to carry out the multifractal analysis of binary, two-dimensional images through the calculation of the Rényi D(q) dimensions and associated statistical regressions. The estimation of a (mono)fractal dimension corresponds to the special case where the moment order is q = 0.

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Soil is well recognized as a highly complex system. The interaction and coupled physical, chemical, and biological processes and phenomena occurring in the soil environment at different spatial and temporal scales are the main reasons for such complexity. There is a need for appropriate methodologies to characterize soil porous systems with an interdisciplinary character. Four different real soil samples, presenting different textures, have been modeled as heterogeneous complex networks, applying a model known as the heterogeneous preferential attachment. An analytical study of the degree distributions in the soil model shows a multiscaling behavior in the connectivity degrees, leaving an empirically testable signature of heterogeneity in the topology of soil pore networks. We also show that the power-law scaling in the degree distribution is a robust trait of the soil model. Last, the detection of spatial pore communities, as densely connected groups with only sparser connections between them, has been studied for the first time in these soil networks. Our results show that the presence of these communities depends on the parameter values used to construct the network. These findings could contribute to understanding the mechanisms of the diffusion phenomena in soils, such as gas and water diffusion, development and dynamics of microorganisms, among others.

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Spatial variability of Vertisol properties is relevant for identifying those zones with physical degradation. In this sense, one has to face the problem of identifying the origin and distribution of spatial variability patterns. The objectives of the present work were (i) to quantify the spatial structure of different physical properties collected from a Vertisol, (ii) to search for potential correlations between different spatial patterns and (iii) to identify relevant components through multivariate spatial analysis. The study was conducted on a Vertisol (Typic Hapludert) dedicated to sugarcane (Saccharum officinarum L.) production during the last sixty years. We used six soil properties collected from a squared grid (225 points) (penetrometer resistance (PR), total porosity, fragmentation dimension (Df), vertical electrical conductivity (ECv), horizontal electrical conductivity (ECh) and soil water content (WC)). All the original data sets were z-transformed before geostatistical analysis. Three different types of semivariogram models were necessary for fitting individual experimental semivariograms. This suggests the different natures of spatial variability patterns. Soil water content rendered the largest nugget effect (C0 = 0.933) while soil total porosity showed the largest range of spatial correlation (A = 43.92 m). The bivariate geostatistical analysis also rendered significant cross-semivariance between different paired soil properties. However, four different semivariogram models were required in that case. This indicates an underlying co-regionalization between different soil properties, which is of interest for delineating management zones within sugarcane fields. Cross-semivariograms showed larger correlation ranges than individual, univariate, semivariograms (A ≥ 29 m). All the findings were supported by multivariate spatial analysis, which showed the influence of soil tillage operations, harvesting machinery and irrigation water distribution on the status of the investigated area.

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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 ?m 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 (?1) 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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Proper management of the N applied to crops is necessary in order to increase yield, improve water use efficiency (WUE) and reduce the pollutions risks with the least economic, environmental and health costs. A field study with melon crops was conducted during 2005, 2006 and 2007 in central Spain, using 11 different amounts of N. Some environmental indexes have been proposed, to provide an essential tool for determining the groundwater pollution risks associated with common agricultural practices. These indexes are related to variation in the nitrate concentration of drinking water (Impact Index (II)) and groundwater (Environmental Impact Index (EII)). Also, the Management Efficiency (ME) was calculated, which is related to the amount of fruit produced per gram of N leached (Nl). To determine the optimum dose of N, it was also necessary to know the N mineralisation (NM). Our results show that 160 kg ha?1 of available N (Nav) produced the maximum fruit yield (FY), enhanced WUE and gave an NM of 85 kg ha?1, while the impact indexes did not exceed the fixed maximum allowable limits and ME was adequate. The proposed indexes proved to be an effective tool for determining the risk of nitrate contamination and confirmed that the optimum dose of N corresponded to the maximum FY with minimal loss of Nl.

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Agronomic management in Ciudad Real, a province in central Spain, is characteristic of semi-arid cropped areas whose water supplies have high nitrate (NO3?) content due to environmental degradation. This situation is aggravated by the existence of a restrictive subsurface layer of ?caliche? or hardpan at a depth of 0.60 m. Under these circumstances, fertirrigation rates, including nitrogen (N) fertilizer schedules, must be carefully calibrated to optimize melon yields while minimizing the N pollution and water supply. Such optimization was sought by fertilizing with different doses of N and irrigating at 100% of the ETc (crop evapotranspiration), adjusted for this crop and area. The N content in the four fertilizer doses used was: 0, 55, 82 and 109 kg N ha?1. Due to the NO3? content in the irrigation water, however, the actual N content was 30 kg ha?1 higher in all four treatments repeated in two different years. The results showed correlation between melon plant N uptake and drainage (Dr), which in turn affects the amount of N leached, as well as correlation between Dr and LAI (leaf area index) for each treatment. A fertilizer factor (?) was estimated through two methods, from difference in Dr and in LAI ratio with respect to the maximum N dose, to correct ETc based on N doses. The difference was found in the adjusted evapotranspiration in both years using the corresponding ? achieved 42?49 mm at vegetative period, depending on the method, and it was not significant at senescent period. Finally, a growth curve between N uptake and plant dry weight (DW) for each treatment was defined to confirm that the observed higher plant vigour, showing higher LAI and reduced Dr, was due mainly to higher N doses.

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El proyecto tiene como objeto definir la viabilidad de explotación de un importante yacimiento de Estaño y Tántalo que se encuentra en una formación geológica de base pegmatítica situada en el norte de España. En base a las reservas calculadas, se define la capacidad de tratamiento de la planta de procesamiento del mineral para un periodo de explotación de 10 años. Como primer paso se estudian los ensayos de caracterización y concentración realizados en laboratorio a partir de muestras de mano representativas del mineral así como otros en planta piloto llevados a cabo anteriormente. Una vez definida la recuperación del Estaño y Tántalo se procede al diseño conceptual del proceso. Posteriormente se desarrolla un diseño e ingeniería preliminar más aproximados, a partir de los cuales se evalúan los costes de equipos y operacionales que, en base a los retornos por la venta de los concentrados, permitirán calcular la rentabilidad del proyecto y riesgos de la inversión. ABSTRACT The purpose of this project is to define the feasibility of mining a major deposit of tin and tantalum found in a pegmatite formation in northern Spain. Based on the estimated reserves, the operating capacity for mining and mineral processing plant was defined for a period of 10 years. As a first step for the development, a research program for characterization and concentration of the ore, were performed in the laboratory based on representative samples from the deposit. In addition, previous pilot plant results were also taken into account. Once determined the recovery of tin and tantalum, the conceptual design process was defined. As a second step, it was developed a preliminary design and engineering, from which the capital and operating costs were estimated .By means of the calculated returns from the sale of concentrates, the profitability of the project and investment risks were finally assessed

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Erosion potential and the effects of tillage can be evaluated from quantitative descriptions of soil surface roughness. The present study therefore aimed to fill the need for a reliable, low-cost and convenient method to measure that parameter. Based on the interpretation of micro-topographic shadows, this new procedure is primarily designed for use in the field after tillage. The principle underlying shadow analysis is the direct relationship between soil surface roughness and the shadows cast by soil structures under fixed sunlight conditions. The results obtained with this method were compared to the statistical indexes used to interpret field readings recorded by a pin meter. The tests were conducted on 4-m2 sandy loam and sandy clay loam plots divided into 1-m2 subplots tilled with three different tools: chisel, tiller and roller. The highly significant correlation between the statistical indexes and shadow analysis results obtained in the laboratory as well as in the field for all the soil?tool combinations proved that both variability (CV) and dispersion (SD) are accommodated by the new method. This procedure simplifies the interpretation of soil surface roughness and shortens the time involved in field operations by a factor ranging from 12 to 20.

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El hombre inicialmente se acerca al recurso hídrico para su aprovechamiento, pero no comprende su origen. También se asombra ante las catástrofes generadas por el temporal o por el efecto vivificante del agua sobre los cultivos. Surgen cosmogonías acuáticas y con frecuencia, dioses de las fuentes o de los manantiales, así como de la lluvia; tal es el caso de Kon, entre los incas, o Tlaloc entre los aztecas, y Chac entre los mayas, por poner algún ejemplo