79 resultados para Corvina uçu


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Los cultivos hortofrutícolas están muy extendidos en España, especialmente en el Sur y a orillas del Mediterráneo, donde el clima es muy apropiado para muchas especies de frutas y hortalizas. La superficie dedicada a cultivos hortícolas es de 3.915.000 ha (1.830.000 ha descontado el olivar), las cuales produjeron en I 982 unos ingresos brutos a los agricultores de 574.896 x 106 ptas. La mecanización de los cultivos hortícolas está muy generalizada en las faenas comunes con otros cultivos (laboreo, fertilización, pulverización); se han conseguido grandes avances en la mecanización de la siembra y trasplante, y están menos extendidos los medios mecánicos para la recolección o aún no se ha logrado una solución satisfactoria para algunos cultivos. La recolección de los productos hortofrutícolas presenta la dificultad de que los órganos a recoger son muy diversos por lo que las máquinas de recolección deben ser muy específicas, se usan pocos días al año y su coste horario resulta elevado. Estas circunstancias unidas al hecho de que la recesión económica ha provocado desde 1974 la aparición de mano de obra desocupada, ha impedido que se haya generalizado la recolección mecanizada en la horticultura. La industria nacional sólo se ha preocupado de fabricar máquinas destinadas a recoger los cultivos más extendidos (olivar, patata) y ha sido necesario importar las máquinas más sofisticadas para cosechar otros cultivos (tomate, judías verdes, guisantes, etc.). Paralelamente al desarrollo y utilización de las máquinas para efectuar la recolección, se han investigado otros problemas relacionados con la misma. En los cultivos anuales se ha avanzado en la selección de variedades especialmente adaptadas a la recolección. Se han desarrollado algunas variedades autóctonas y se han adaptado otras traídas de EE.UU., y Más concretamente de California, dada la similitud de clima. La introducción de variedades y métodos de cultivo distintos de los tradicionales presenta dificultades aunque en los últimos años parece acelerarse la transformación hacia los nuevos sistemas. La infraestructura (parcelas pequeñas) es un problema básico en ciertas áreas, pero en los nuevos regadíos se cuenta con una situación bastante adecuada para los sistemas más industriales de producción. Los cultivos frutales son más difíciles de mecanizar. La poda que tiene la vid hace que sea prácticamente imposible hasta ahora la recolección mecánica y es muy difícil lograrlo con el olivar. Sé han hecho grandes avances en el manejo y limpieza del producto recogido y su transporte a fábrica, estando estas faenas mecanizadas casi por completo.

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In the last several years, micro-blogging Online Social Networks (OSNs), such as Twitter, have taken the world by storm, now boasting over 100 million subscribers. As an unparalleled stage for an enormous audience, they offer fast and reliable centralized diffusion of pithy tweets to great multitudes of information-hungry and always-connected followers. At the same time, this information gathering and dissemination paradigm prompts some important privacy concerns about relationships between tweeters, followers and interests of the latter. In this paper, we assess privacy in today?s Twitter-like OSNs and describe an architecture and a trial implementation of a privacy-preserving service called Hummingbird. It is essentially a variant of Twitter that protects tweet contents, hashtags and follower interests from the (potentially) prying eyes of the centralized server. We argue that, although inherently limited by Twitter?s mission of scalable information-sharing, this degree of privacy is valuable. We demonstrate, via a working prototype, that Hummingbird?s additional costs are tolerably low. We also sketch out some viable enhancements that might offer better privacy in the long term.

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1. Introduction 2. Air Quality Modeling system 3. Emission Inventories 4. Applications and Results 5. Conclusions

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En las últimas décadas hemos visto como han proliferado en la periferia de nuestras ciudades grandes extensiones de asentamientos residenciales. Este modelo urbanístico se ha demostrado no solo lesivo para el medio ambiente sino además ideológicamente erróneo. Concebido en EE.UU. como respuesta a la demanda de bienestar de una reciente clase media, su tipología fue penetrando paulatinamente en la ciudad europea a través del cine. Basada en premisas poco flexibles, pronto se revelaría como un modelo insatisfactorio para la mujer a la que en teoría iba dirigida. In recent decades we have experienced how large extensions of residential settlements have proliferated in the periphery of our cities. This urban model has been shown not only harmful to the environment but also ideologically wrong. Designed in the USA in response to the demand for welfare of an emerging middle class, their typology was gradually penetrating the European city through cinema. Based on inflexible assumptions, it was soon revealed as an unsatisfactory model for women to whom it was theoretically addressed.

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Direct Steam Generation (DSG) in Linear Fresnel (LF) solar collectors is being consolidated as a feasible technology for Concentrating Solar Power (CSP) plants. The competitiveness of this technology relies on the following main features: water as heat transfer fluid (HTF) in Solar Field (SF), obtaining high superheated steam temperatures and pressures at turbine inlet (500ºC and 90 bar), no heat tracing required to avoid HTF freezing, no HTF degradation, no environmental impacts, any heat exchanger between SF and Balance Of Plant (BOP), and low cost installation and maintenance. Regarding to LF solar collectors, were recently developed as an alternative to Parabolic Trough Collector (PTC) technology. The main advantages of LF are: the reduced collector manufacturing cost and maintenance, linear mirrors shapes versus parabolic mirror, fixed receiver pipes (no ball joints reducing leaking for high pressures), lower susceptibility to wind damages, and light supporting structures allowing reduced driving devices. Companies as Novatec, Areva, Solar Euromed, etc., are investing in LF DSG technology and constructing different pilot plants to demonstrate the benefits and feasibility of this solution for defined locations and conditions (Puerto Errado 1 and 2 in Murcia Spain, Lidellin Newcastle Australia, Kogran Creek in South West Queensland Australia, Kimberlina in Bakersfield California USA, Llo Solar in Pyrénées France,Dhursar in India,etc). There are several critical decisions that must be taken in order to obtain a compromise and optimization between plant performance, cost, and durability. Some of these decisions go through the SF design: proper thermodynamic operational parameters, receiver material selection for high pressures, phase separators and recirculation pumps number and location, pipes distribution to reduce the amount of tubes (reducing possible leaks points and transient time, etc.), etc. Attending to these aspects, the correct design parameters selection and its correct assessment are the main target for designing DSG LF power plants. For this purpose in the recent few years some commercial software tools were developed to simulatesolar thermal power plants, the most focused on LF DSG design are Thermoflex and System Advisor Model (SAM). Once the simulation tool is selected,it is made the study of the proposed SFconfiguration that constitutes the main innovation of this work, and also a comparison with one of the most typical state-of-the-art configuration. The transient analysis must be simulated with high detail level, mainly in the BOP during start up, shut down, stand by, and partial loads are crucial, to obtain the annual plant performance. An innovative SF configurationwas proposed and analyzed to improve plant performance. Finally it was demonstrated thermal inertia and BOP regulation mode are critical points in low sun irradiation day plant behavior, impacting in annual performance depending on power plant location.

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The deployment of home-based smart health services requires effective and reliable systems for personal and environmental data management. ooperation between Home Area Networks (HAN) and Body Area Networks (BAN) can provide smart systems with ad hoc reasoning information to support health care. This paper details the implementation of an architecture that integrates BAN, HAN and intelligent agents to manage physiological and environmental data to proactively detect risk situations at the digital home. The system monitors dynamic situations and timely adjusts its behavior to detect user risks concerning to health. Thus, this work provides a reasoning framework to infer appropriate solutions in cases of health risk episodes. Proposed smart health monitoring approach integrates complex reasoning according to home environment, user profile and physiological parameters defined by a scalable ontology. As a result, health care demands can be detected to activate adequate internal mechanisms and report public health services for requested actions.

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Hace bastantes años, cuando iniciaba mis estudios en la Universidad, había cerca de mi casa una tienda de componentes electrónicos que se llamaba El Ojo Mágico. No sé si aún seguirá existiendo, pero recuerdo que para todos los que, por esas fechas, querían iniciarse en lo que denominábamos el cacharreo acudían allí para encontrar la válvula electrónica que no localizaban en ningún otro lado o la ferrita que acababa de aparecer en EE UU y que había llegado allí nadie sabía cómo.

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Laser shock processing (LSP) is being increasingly applied as an effective technology for the improvement of metallic materials mechanical and surface properties in different types of components as a means of enhancement of their corrosion and fatigue life behavior. As reported in previous contributions by the authors, a main effect resulting from the application of the LSP technique consists on the generation of relatively deep compression residual stresses field into metallic alloy pieces allowing an improved mechanical behaviour, explicitly the life improvement of the treated specimens against wear, crack growth and stress corrosion cracking. Additional results accomplished by the authors in the line of practical development of the LSP technique at an experimental level (aiming its integral assessment from an interrelated theoretical and experimental point of view) are presented in this paper. Concretely, follow-on experimental results on the residual stress profiles and associated surface properties modification successfully reached in typical materials (especially Al and Ti alloys characteristic of high reliability components in the aerospace, nuclear and biomedical sectors) under different LSP irradiation conditions are presented along with a practical correlated analysis on the protective character of the residual stress profiles obtained under different irradiation strategies. Additional remarks on the improved character of the LSP technique over the traditional “shot peening” technique in what concerns depth of induced compressive residual stresses fields are also made through the paper

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The Europe-Japan Collaborative Research Project on Concentrator Photovoltaics (CPV) has been initiated under support by the EC (European Commission) and NEDO (New Energy and Industrial Technology Development Organization) since June 2011. This is project (NGCPV Project; a New Generation of Concentrator PhotoVoltaic cells, modules and systems) is aiming to accelerate the move to very high efficiency and lower cost CPV technologies and to enhance widespread deployment of CPV systems. 7 organizations such as UPM, FhG-ISE Imperial College, BSQ, CEA-INES, ENEA, and PSE in Europe and 9 organizations such as TTI, Univ. Tokyo, AIST, Sharp Co. Daido Steel Co., Kobe Univ., Miyazaki Univ., Asahi Kasei Co., and Takano Co. participate in this project. The targets of this project are 1) to develop world-record efficiency CPV cells of more than 45%, 2) to develop world-record efficiency CPV modules of 35%, 3) to establish standard measurements of CPV cells and modules, 4) to install 50kW CPV system in Spain, to carry out field test of CPV system and to manage power generation of CPV systems, and 5) to develop high-efficiency and low-cost new materials and structure cells such as III-V-N, III-V-on-Si tandem, quantum dots and wells. This paper presents outline of this project and most recent results such as world record efficiency (37.9% under 1-sun) cell and high-efficiency (43.5% under 240-306 suns) concentrator cell with inverted epitaxial grown InGaP/GaAs/InGaAs 3-junction solar cells.

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Energy conversion in solar cells incorporating ZnTeO base layers is presented. The ZnTeO base layers incorporate intermediate electronic states located approximately 0.4eV below the conduction band edge as a result of the substitution of O in Te sites in the ZnTe lattice. Cells with ZnTeO base layers demonstrate optical response at energies lower than the ZnTe bandedge, a feature that is absent in reference cells with ZnTe base layers. Quantum efficiency is significantly improved with the incorporation of ZnSe emitter/window layers and transition from growth on GaAs substrates to GaSb substrates with a near lattice match to ZnTe.

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We introduce one trivial but puzzling solar cell structure. It consists of a high bandgap pn junction (top cell) grown on a substrate of lower bandgap. Let us assume, for example, that the bandgap of the top cell is 1.85 eV (Al 0.3Ga 0.7As) and the bandgap of the substrate is 1.42 eV (GaAs). Is the open-circuit of the top cell limited to 1.42 V or to 1.85 V? If the answer is ldquo1.85 Vrdquo we could then make the mind experiment in which we illuminate the cell with 1.5 eV photons (notice these photons would only be absorbed in the substrate). If we admit that these photons can generate photocurrent, then because we have also admitted that the voltage is limited to 1.85 V, it might be possible that the electron-hole pairs generated by these photons were extracted at 1.6 V for example. However, if we do so, the principles of thermodynamics could be violated because we would be extracting more energy from the photon than the energy it initially had. How can we then solve this puzzle?

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La presente investigación recoge una experiencia de innovación educativa que demuestra la utilidad de las enciclopedias visuales temáticas para la formación académica a través de Internet. Los objetivos de esta experiencia recaen en verificar si es posible crear enciclopedias visuales temáticas que mediante recursos audiovisuales permitan el aprendizaje de aspectos complejos de una manera asequible. Con el interés de obtener datos que permitan comprobar la idoneidad de este tipo de recursos formativos, se construye una enciclopedia visual temática centrada en aspectos de la seguridad de la información y protección de las comunicaciones digitales. Para el diseño de esta enciclopedia se considera una metodología de diseño basada en la definición de una temática de interés, tipo de aprendizaje, formato y calidad de las unidades temáticas, difusión y coste, etc. Esta enciclopedia visual, el proyecto Intypedia, novedoso a escala mundial, está compuesta por lecciones en vídeo de unos 12 minutos y material docente complementario. El lenguaje utilizado permite el correcto seguimiento de las lecciones tanto a expertos en seguridad como internautas en general. Por tanto, la calidad y claridad de estos contenidos se convierten en un valor añadido del proyecto. Los resultados derivados reflejan la utilidad de Intypedia. En 2 años de vida la enciclopedia recibe miles de visitas al mes y se ha convertido en una enciclopedia de referencia en Iberoamérica y en las redes sociales en las que está presente. Algunos de los resultados más importantes son: 232.786 reproducciones únicas de las lecciones, siendo los consumidores principalmente internautas, profesionales y técnicos de España, Iberoamérica y EE.UU.; más de 176.000 documentos descargados, en torno a los 2.100 seguidores uniendo las redes sociales y una visibilidad en Google con más de 40.000 entradas que enlazan al proyecto.

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Influencia de cereal principal y el tamaño medio de partícula de la dieta sobre el desempeño productivo y calidad de los huevos de las gallinas marrones para puesta.

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Recently there has been an important increase in electric equipment, as well as, electric power demand in aircrafts applications. This prompts to the necessity of efficient, reliable, and low-weight converters, especially rectifiers from 115VAC to 270VDC because these voltages are used in power distribution. In order to obtain a high efficiency, in aircraft application where the derating in semiconductors is high, normally several semiconductors are used in parallel to decrease the conduction losses. However, this is in conflict with high reliability. To match both goals of high efficiency and reliability, this work proposes an interleaved multi-cell rectifier system, employing several converter cells in parallel instead of parallel-connected semiconductors. In this work a 10kW multi-cell isolated rectifier system has been designed where each cell is composed of a buck type rectifier and a full bridge DC-DC converter. The implemented system exhibits 91% of efficiency, high power density (10kW/10kg), low THD (2.5%), and n−1 fault tolerance which complies, with military aircraft standards.

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In the present article, an innovative approach for generation of an UWB monocycle is proposed and experimentally demonstrated. The proposed design features the combination of an interferometric device (SOA-Mach Zehnder interferometer) with an optical processor unit. The fusion of such components permits to generate, combine and customize UWB pulses. An optical pulse is used as pump signal and two optical carriers represent and the optical input of the system. The selection of a specific wavelength and therefore of a particular port provides the possibility of modifying the systems output pulse polarity. The capacity of transmitting several data sequence has been also evidenced.