245 resultados para Rosal, Miguel Angel


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Enriquecer el conocimiento sobre la Radiación Solar (RS) a nivel del suelo es de gran interés para diferentes aplicaciones meteorológicas entre ellas el área de las energías renovables como la energía solar. La interpolación de observaciones de RS por estaciones en tierra, los sensores remotos y la ejecución de distintos modelos son algunas de las formas que existen para obtener valores de RS con continuidad espacial en el terreno. Aunque se sabe que los mejores valores de RS en la superficie son los observados por estaciones terrestres, este tipo de observaciones presentan como desventaja una baja distribución geográfica. En este trabajo se propone el uso de estaciones meteorológicas de voluntarios no oficiales (Meteoclimatic, Weather, Underground, Weather, Link, CWOP) las cuales son fuentes de Información Geográfica por Voluntarios (Volunteered Geographic Information - VGI) que proporcionan sus observaciones RS en tiempo real a través de Internet como una alternativa para densificar la disponibilidad y distribución espacial de las observaciones por RS a nivel superficial. En este trabajo se desarrolla una metodología que contempla tanto la recolección de las observaciones, como su alineación temporal para finalizar con el análisis de los datos indicando sus valores de incertidumbre a medida que se integra en una Base de Datos que integra las distintas fuentes de datos utilizadas. Los resultados indican que el error RS relativo entre las estimaciones por satélite y las observaciones en superficie no es constante a lo largo del día y por tanto debe analizarse mediante agrupaciones. También se ha observado que dicho error puede verse afectado por la localización de la estación meteorológica, en concreto se ha apreciado una relación directa entre el error relativo y la diferencia entre las longitudes de la ubicación de las estaciones superficiales en tierra y el satélite. Ésta misma comparación siguiere que es correcto considerar el uso de Meteoclimatic (la red Voluntaria tomada como piloto) como una fuente de observaciones de la RS importante al presentar un error esperado y aportar aproximadamente 10 veces más estaciones meteorológicas RS que la red oficial en España aportando un buen precedente para la integración de más redes voluntarias en la densificación de observaciones de la RS con estaciones en tierra.

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The pH response of GaN/AlInN/AlN/GaN ion-sensitive field effect transistor (ISFET) on Si substrates has been characterized. We analyzed the variation of the surface potential (ΔVsp/ΔpH) and current (ΔIds/ΔpH) with solution pH in devices with the same indium content (17%, in-plane lattice-matched to GaN) and different AlInN thickness (6 nm and 10 nm), and compared with the literature. The shrinkage of the barrier, that has the effect to increase the transconductance of the device, makes the 2-dimensional electron density (2DEG) at the interface very sensitive to changes in the surface. Although the surface potential sensitivity to pH is similar in the two devices, the current change with pH (ΔIds/ΔpH), when biasing the ISFET by a Ag/AgCl reference electrode, is almost 50% higher in the device with 6 nm AlInN barrier, compared to the device with 10 nm barrier. When measuring the current response (ΔIds/ΔpH) without reference electrode, the device with thinner AlInN layer has a larger response than the thicker one, of a factor of 140%, and that current response without reference electrode is only 22% lower than its maximum response obtained using reference electrode.

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GaN and InGaN nanocolumns of various compositions are studied by room-temperature photoluminescence (PL) under different ambient conditions. GaN nanocolumns exhibit a reversible quenching upon exposure to air under constant UV excitation, following a t−1/2 time dependence and resulting in a total reduction of intensity by 85–90%, as compared to PL measured in vacuum, with no spectral change. This effect is not observed when exposing the samples to pure nitrogen. We attribute this effect to photoabsorption and photodesorption of oxygen that modifies the surface potential bending. InGaN nanocolumns, under the same experimental conditions do not show the same quenching features: The high-energy part of the broad PL line is not modified by exposure to air, whereas a lower-energy part, which does quench by 80–90%, can now be distinguished. We discuss the different behaviors in terms of carrier localization and possible composition or strain gradients in the InGaN nanocolumns.

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At the present time almost all map libraries on the Internet are image collections generated by the digitization of early maps. This type of graphics files provides researchers with the possibility of accessing and visualizing historical cartographic information keeping in mind that this information has a degree of quality that depends upon elements such as the accuracy of the digitization process and proprietary constraints (e.g. visualization, resolution downloading options, copyright, use constraints). In most cases, access to these map libraries is useful only as a first approach and it is not possible to use those maps for scientific work due to the sparse tools available to measure, match, analyze and/or combine those resources with different kinds of cartography. This paper presents a method to enrich virtual map rooms and provide historians and other professional with a tool that let them to make the most of libraries in the digital era.

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El presente trabajo es el resultado de una asistencia técnica en materia de análisis y diseño bioclimático de los espacios libres realizada por encargo del del Instituto Politécnico de Bragança dentro del proyecto BIOURB, en el marco del Programa de Cooperación Transfronteriza España - Portugal que se desarrolla con el apoyo de la UE y la cofinanciación comunitaria de Fondo Europeo de Desarrollo Regional (FEDER) y el Programa de Cooperación Transfronteriza Portugal España (POCTEP). El trabajo fue realizado entre 2012 y 2013 por investigadores del GIAU+S de la UPM a través del Instituto Juan de Herrera de la ETSAM. Para la definición de los contenidos, aporte de datos y traducción contribuyeron además distintos investigadores del Centro de Investigação da Montanha (CIMO) del Instituto Politécnico de Bragança.

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This article presents a novel application which has been developed in Visual LISP for an AutoCAD environment, and which shows intuitively and quickly the generation of the Cardioid curve in five different ways (conchoid of a circumference, pedal curve of a circumference, inverse of a parabola, orthoptic curve of a circumference and epicycloid of a circumference). This cyclic curve has a large number of artistic and technical applications, among them the profile of some cams.

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The basics of the self-assembled growth of GaN nanorods on Si(111) are reviewed. Morphology differences and optical properties are compared to those of GaN layers grown directly on Si(111). The effects of the growth temperature on the In incorporation in self-assembled InGaN nanorods grown on Si(111) is described. In addition, the inclusion of InGaN quantum disk structures into selfassembled GaN nanorods show clear confinement effects as a function of the quantum disk thickness. In order to overcome the properties dispersion and the intrinsic inhomogeneous nature of the self-assembled growth, the selective area growth of GaN nanorods on both, c-plane and a-plane GaN on sapphire templates, is addressed, with special emphasis on optical quality and morphology differences. The analysis of the optical emission from a single InGaN quantum disk is shown for both polar and non-polar nanorod orientations

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E-beam lithography was used to pattern a titanium mask on a GaN substrate with ordered arrays of nanoholes. This patterned mask served as a template for the subsequent ordered growth of GaN/InGaN nanorods by plasma-assisted molecular beam epitaxy. The mask patterning process was optimized for several holes configurations. The smallest holes were 30 nm in diameter with a pitch (center-to-center distance) of 100 nm only. High quality masks of several geometries were obtained that could be used to grow ordered GaN/InGaN nanorods with full selectivity (growth localized inside the nanoholes only) over areas of hundreds of microns. Although some parasitic InGaN growth occurred between the nanorods during the In incorporation, transmission electron microscopy and photoluminescence measurements demonstrated that these ordered nanorods exhibit high crystal quality and reproducible optical properties.

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Ordered arrays of III-Nitride nanocolumns are excellent candidates for the fabrication of nano-optoelectronic devices. Different technologies such as e-beam lithography or colloidal lithography, have been used to obtain ordered arrays. All these technologies have in common several processing steps that can affect the crystalline growth of the nanocolumns. In this work, we present a single lithographic step that permits to grow ordered GaN nanocolumns with different geometries. The patterning is based in the use of a focused ion beam with different doses. With this method has been possible to create GaN nanopillars and nanocylinders.

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This work reports on the morphology control of the selective area growth of GaN-based nanostructures on c-plane GaN templates. By decreasing the substrate temperature, the nanostructures morphology changes from pyramidal islands (no vertical m-planes), to GaN nanocolumns with top semipolar r-planes, and further to GaN nanocolumns with top polar c-planes. When growing InGaN nano-disks embedded into the GaN nanocolumns, the different morphologies mentioned lead to different optical properties, due to the semi-polar and polar nature of the r-planes and c-planes involved. These differences are assessed by photoluminescence measurements at low temperature and correlated to the specific nano-disk geometry.

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The quality and the reliability of the power generated by large grid-connected photovoltaic (PV) plants are negatively affected by the source characteristic variability. This paper deals with the smoothing of power fluctuations because of geographical dispersion of PV systems. The fluctuation frequency and the maximum fluctuation registered at a PV plant ensemble are analyzed to study these effects. We propose an empirical expression to compare the fluctuation attenuation because of both the size and the number of PV plants grouped. The convolution of single PV plants frequency distribution functions has turned out to be a successful tool to statistically describe the behavior of an ensemble of PV plants and determine their maximum output fluctuation. Our work is based on experimental 1-s data collected throughout 2009 from seven PV plants, 20 MWp in total, separated between 6 and 360 km.

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Este trabajo aborda la metodología seguida para llevar a cabo el proyecto de investigación PRONAF (Clinical Trials Gov.: number NCT01116856.) Background: At present, scientific consensus exists on the multifactorial etiopatogenia of obesity. Both professionals and researchers agree that treatment must also have a multifactorial approach, including diet, physical activity, pharmacology and/or surgical treatment. These two last ones should be reserved for those cases of morbid obesities or in case of failure of the previous ones. The aim of the PRONAF study is to determine what type of exercise combined with caloric restriction is the most appropriate to be included in overweigth and obesity intervention programs, and the aim of this paper is to describe the design and the evaluation methods used to carry out the PRONAF study. Methods/design: One-hundred nineteen overweight (46 males) and 120 obese (61 males) subjects aged 18–50 years were randomly assigned to a strength training group, an endurance training group, a combined strength + endurance training group or a diet and physical activity recommendations group. The intervention period was 22 weeks (in all cases 3 times/wk of training for 22 weeks and 2 weeks for pre and post evaluation). All subjects followed a hypocaloric diet (25-30% less energy intake than the daily energy expenditure estimated by accelerometry). 29–34% of the total energy intake came from fat, 14–20% from protein, and 50–55% from carbohydrates. The mayor outcome variables assesed were, biochemical and inflamatory markers, body composition, energy balance, physical fitness, nutritional habits, genetic profile and quality of life. 180 (75.3%) subjects finished the study, with a dropout rate of 24.7%. Dropout reasons included: personal reasons 17 (28.8%), low adherence to exercise 3 (5.1%), low adherence to diet 6 (10.2%), job change 6 (10.2%), and lost interest 27 (45.8%). Discussion: Feasibility of the study has been proven, with a low dropout rate which corresponds to the estimated sample size. Transfer of knowledge is foreseen as a spin-off, in order that overweight and obese subjects can benefit from the results. The aim is to transfer it to sports centres. Effectiveness on individual health-related parameter in order to determine the most effective training programme will be analysed in forthcoming publications.

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El objetivo del trabajo fue crear modelos discriminantes para estimar el porcentaje de pérdida de peso tras una intervención de seis meses, determinando la importancia de cada variable estudiada. La muestra, formada por 89 participantes en sobrepeso (18–50 años; IMC >25 y <29.9 kg/m2), fue distribuida en cuatro grupos de intervención: entrenamiento con cargas (S, n=22); entrenamiento aeróbico (E, n=25); entrenamiento combinado cargas + aeróbico (SE, n=23) y recomendaciones de ejercicio físico (C, n=19). Los grupos de entrenamiento entrenaron 3 veces/semana durante 24 semanas. Todos los grupos siguieron una restricción calórica del 25% del gasto energético diario. Tres modelos discriminantes fueron obtenidos para estimar el porcentaje de pérdida de peso, determinando que el peso, la masa grasa y el peso magro son las variables más importantes para discriminar la pérdida de peso. Los tres modelos discriminantes consiguen un elevado porcentaje de clasificación correcta. Registrado en Clinical Trials Gov.: número NCT01116856.

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This paper proposes a way to quantify the emissions of mercury (Hg) and CO2 associated with the manufacture and operation of compact fluorescent lamps with integrated ballasts (CFLis), as well as the economic cost of using them under different operating cycles. The main purpose of this paper is to find simple criteria for reducing the polluting emissions under consideration and the economic cost of CFLi to a minimum. A lifetime model is proposed that allows the emissions and costs to be described as a function of degradation from turning CFLi on and their continuous operation. An idealized model of a CFLi is defined that combines characteristics stated by different manufacturers. In addition, two CFLi models representing poor-quality products are analyzed. It was found that the emissions and costs per unit of time of operation of the CFLi depend linearly on the number of times per unit of time it is turned on and the time of continuous operation. The optimal conditions (lowest emissions and costs) depend on the place of manufacture, the place of operation and the quality of the components of the lamp/ballast. Finally, it was also found that for each lamp, there are intervals when it is turned off during which emissions of pollutants and costs are identical regardless of how often the lamp is turned on or the time it remains on. For CO2 emissions, the lamp must be off up to 5 minutes; for the cost, up to 7 minutes and for Hg emissions, up to 43 minutes. It is advisable not to turn on a CFLi sooner than 43 minutes from the last time it was turned off.

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Renewable energy hybrid systems and mini-grids for electrification of rural areas are known to be reliable and more cost efficient than grid extension or only-diesel based systems. However, there is still some uncertainty in some areas, for example, which is the most efficient way of coupling hybrid systems: AC, DC or AC-DC? With the use of Matlab/Simulink a mini-grid that connects a school, a small hospital and an ecotourism hostel has been modelled. This same mini grid has been coupled in the different possible ways and the system’s efficiency has been studied. In addition, while keeping the consumption constant, the generation sources and the consumption profile have been modified and the effect on the efficiency under each configuration has also been analysed. Finally different weather profiles have been introduced and, again, the effect on the efficiency of each system has been observed.