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Evaluación del Rendimiento de Modulos Solares Híbridos (FV/T) Para el Abastecimiento Energético de Autoclaves Hospitalarias

机译:用于医院高压釜能源供应的混合太阳能模块(FV / T)的性能评价

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The future of the energy supply systems worldwide is oriented to the development and use of renewable energies, among which solar energy is currently the most common. The technology associated with these sources is relatively recent and still requires developments that increase their efficiency, particularly in commercial photovoltaic. Hybrid solar modules (FV/T) are photovoltaic modules which integrate heat exchange to improve the energy production efficient. It is not only interesting for the generation of electrical energy it has an important impact on the use of thermal energy. The interesting point about this proposal is that the water flow through the heat exchange contributes to its preheating and decrease the temperature of the photovoltaic cell. Therefore, use this technology is relevant to increase the electrical efficiency of the solar module. In processes where the flow demand is not continuous, as sterilization in hospital trough autoclaves, it is necessary to generate a circulation of continues flow through the hybrid solar module (FV/T) in order to get benefits of this kind technology. Therefore, it is necessary to know the real performance obtained considering the energy required for achieving the re-circulation of the fluid in instants that the process does not demand it. This work evaluates the performance of hybrid solar modules (FV/T) to supply sterilization processes through autoclaves, whereby a complete model of a PVT-Premium module is generated and simulations are carried out to evaluate the use of these modules to supply an autoclave 636-2FD.
机译:能源供应系统的未来全球是面向开发和利用可再生能源,其中太阳能是目前最常见的。与这些源相关的技术是相对较新的,仍然需要发展的是提高效率,特别是在商业光伏。混合型太阳能模块(FV / T)是其整合的热交换,以提高能源生产效率的光生伏打模块。它不仅有趣电能的产生是对利用热能产生重要影响。这个建议有趣的一点是,水流通过热交换有助于其预热,降低光伏电池的温度。因此,使用这种技术是相关,以增加太阳能电池组件的电效率。在流量需求是不连续的,在医院的高压锅槽消毒过程中,需要生成为了得到这种技术的好处继续通过混合太阳能模块(FV / T)流动的循环。因此,有必要知道得考虑实现流体的再循环的时刻,这一进程并不要求它所需的能量的真实表现。这项工作的计算结果的混合型太阳能模块的通过高压釜,由此生成PVT-高级模块的完整的模型和模拟都进行了评估使用这些模块的供给的高压釜中的性能(FV / T),以供应灭菌过程636 -2FD。

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