1000 resultados para Solar houses.


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Tesis (Maestría en Ingeniería Física Industrial) UANL, 2014.

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UANL

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Tesis (Doctor en Ciencias con orientación en Química Analítica Ambiental) UANL, 2013.

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Tesis (Doctorado en Ciencias con orientación en Química de los Materiales) UANL, 2014.

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Thèse numérisée par la Division de la gestion de documents et des archives de l'Université de Montréal

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Dans les dernières décennies, les changements morphologiques des maisons iraniennes, l’arrivage de l'éclairage artificiel et le manque de connaissance suffisante de la valeur de la lumière du jour pour le bien-être des occupants ont résulté une diminution de l'utilisation de la lumière du jour dans les habitations iraniennes contemporaines. En conséquence, le niveau du bien-être des occupants a décru ce qui peut être corrélée avec la diminution de l'utilisation de la lumière du jour. Considérant l'architecture traditionnelle iranienne et l'importance de la lumière du jour dans les habitations traditionnelles, cette recherche étudie l’utilisation de la lumière du jour dans les habitations traditionnelles et explore comment extrapoler ces techniques dans les maisons contemporaines pourrait augmenter l'utilisation de la lumière du jour et par conséquence améliorer le bien-être des occupants. Une revue de littérature, une enquête des experts iraniens et une étude de cas des maisons à cour traditionnelles à la ville de Kashan ont permis de recueillir les données nécessaires pour cette recherche. De par le contexte de recherche, la ville de Kashan a été choisie particulièrement grâce à sa texture historique intacte. L’analyse de la lumière du jour a été faite par un logiciel de simulation pour trois maisons à cour de la ville de Kashan ayant les mêmes caractéristiques de salon d’hiver. Cette étude se concentre sur l’analyse de la lumière du jour dans les salons d'hiver du fait de la priorité obtenue de l'enquête des experts et de la revue de littérature. Les résultats de cette recherche montrent que l’extrapolation des techniques traditionnelles de l'utilisation de lumière du jour dans les habitations modernes peut être considéré comme une option de conception alternative. Cette dernière peut optimiser l'utilisation de lumière du jour et par conséquence améliorer le bien-être des occupants. L'approche utilisée dans cette recherche a fourni une occasion d’étudier l'architecture du passé et d’évaluer plus précisément son importance. Cette recherche contribue ainsi à définir un modèle en tirant les leçons du passé pour résoudre les problèmes actuels.

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The need for reliable predictions of the solar activity cycle motivates the development of dynamo models incorporating a representation of surface processes sufficiently detailed to allow assimilation of magnetographic data. In this series of papers we present one such dynamo model, and document its behavior and properties. This first paper focuses on one of the model's key components, namely surface magnetic flux evolution. Using a genetic algorithm, we obtain best-fit parameters of the transport model by least-squares minimization of the differences between the associated synthetic synoptic magnetogram and real magnetographic data for activity cycle 21. Our fitting procedure also returns Monte Carlo-like error estimates. We show that the range of acceptable surface meridional flow profiles is in good agreement with Doppler measurements, even though the latter are not used in the fitting process. Using a synthetic database of bipolar magnetic region (BMR) emergences reproducing the statistical properties of observed emergences, we also ascertain the sensitivity of global cycle properties, such as the strength of the dipole moment and timing of polarity reversal, to distinct realizations of BMR emergence, and on this basis argue that this stochasticity represents a primary source of uncertainty for predicting solar cycle characteristics.

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The study on the fabrication and characterization of spray pyrolysed cadmium sulphide homojunction solar cells. As an alternative to the conventional energy source, the PV technology has to be improved. Study about the factors affecting the performance of the existing solar cells and this will result in the enhancement of efficiency of the cells. At the same time it is equally important to have R&D works on developing new photovoltaic devices and processes which are less expensive for large scale production. CdS is an important binary compound semiconductor, which is very useful in the field of photovoltaics. It is very easy to prepare large area CdS thin films. In order to fabricate thin film homojunction cadmium sulphide cells, prepared and characterized SnO2 thin film as the lower electrode, p-CdS as the active layer and n-CdS as window layer. Cadmium material used for the fabrication of homojunction solar cells is highly toxic. The major damage due to continued exposure to low levels of cadmium are on the kidneys, lungs and bones. The real advantage of spray pyrolysis process is that there is no emission of any toxic gases during the deposition. Very low concentration of the chemicals is needed in this process. The risk involved from this material is very low, though they are toxic. On large scale usage it may become necessary that the cells after their life, should be bought back by the companies to retrieve chemicals like cadmium. This will reduce environmental problem and also the material wastage

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In the present work, structural, optical and electrical properties of indium sulfide are tuned by specific and controlled doping. Silver, tin, copper and chlorine were used as the doping elements. In2S3 thin films for the present study were prepared using a simple and low cost “Chemical Spray Pyrolysis (CSP)” technique. This technique is adaptable for large-area deposition of thin films in any required shape and facilitates easiness of doping and/or variation of atomic ratio. It involves spraying a solution, usually aqueous, containing soluble salts of the constituents of the desired compound onto a heated substrate. Doping process was optimized for different doping concentrations. On optimizing doping conditions, we tuned the structural, optical and electrical properties of indium sulfide thin films making them perform as an ideal buffer layer.

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Aim of the present work was to automate CSP process, to deposit and characterize CuInS2/In2S3 layers using this system and to fabricate devices using these films.An automated spray system for the deposition of compound semiconductor thin films was designed and developed so as to eliminate the manual labour involved in spraying and facilitate standardization of the method. The system was designed such that parameters like spray rate, movement of spray head, duration of spray, temperature of substrate, pressure of carrier gas and height of the spray head from the substrate could be varied. Using this system, binary, ternary as well as quaternary films could be successfully deposited.The second part of the work deal with deposition and characterization of CuInS2 and In2S3 layers respectively.In the case of CuInS2 absorbers, the effects of different preparation conditions and post deposition treatments on the optoelectronic, morphological and structural properties were investigated. It was observed that preparation conditions and post deposition treatments played crucial role in controlling the properties of the films. The studies in this direction were useful in understanding how the variation in spray parameters tailored the properties of the absorber layer. These results were subsequently made use of in device fabrication process.Effects of copper incorporation in In2S3 films were investigated to find how the diffusion of Cu from CuInS2 to In2S3 will affect the properties at the junction. It was noticed that there was a regular variation in the opto-electronic properties with increase in copper concentration.Devices were fabricated on ITO coated glass using CuInS2 as absorber and In2S3 as buffer layer with silver as the top electrode. Stable devices could be deposited over an area of 0.25 cm2, even though the efficiency obtained was not high. Using manual spray system, we could achieve devices of area 0.01 cm2 only. Thus automation helped in obtaining repeatable results over larger areas than those obtained while using the manual unit. Silver diffusion on the cells before coating the electrodes resulted in better collection of carriers.From this work it was seen CuInS2/In2S3 junction deposited through automated spray process has potential to achieve high efficiencies.