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Conversion of NIR-radiation to electric power in a solar greenhouse

机译:太阳能温室中NIR辐射对电力的转换

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The scope of this investigation is the development of a new type of greenhouse with an integrated filter for rejecting near infrared radiation (NIR) and a solar energy delivery system. Cooled greenhouses are an important issue to cope with the combination of high global radiation and high outdoor temperatures. As a first measure, the spectral selective cover material, which prevents the entrance of NIR radiation, is investigated. The special spectral selective reflectivity of these materials has to block up to 50% of the solar energy outside the greenhouse, which will reduce the needed cooling capacity. The second measure is the integration of a solar energy system. When the NIR reflecting coating is designed as a parabolic or circular shaped reflector integrated in the greenhouse, the reflected solar energy of a PV cell in the focus point delivers electric energy. With a ray tracing computer program the geometry of the reflector was optimally designed with respect to the maximum power level. The PV or TPV cells mounted in the focal point require cooling due to the high heat load of the concentrated radiation (concentration factor of 40-80). The properties of different materials, Ge, GaSb, CIS and Si cells were investigated to find the optimal cell for this application. For the second option a tubular collector is placed in the focus of the reflector. The collector contains thermal oil, which is heated up to a temperature of 400 degrees C. This hot oil can be used for heating a Stirling motor or an Organic Rankine Cycle (ORC). The typical efficiencies and economic achievement of these systems including the tube collector are compared with the efficiencies of the TPV cells.
机译:本调查的范围是开发新型温室,其中一体化过滤器,用于拒绝近红外辐射(NIR)和太阳能输送系统。冷却的温室是应对高全球辐射和高户外温度的结合的重要问题。作为第一措施,研究了防止NIR辐射入口的光谱选择性覆盖材料。这些材料的特殊光谱选择性反射率必须阻挡温室以外的太阳能的50%,这将降低所需的冷却能力。第二种措施是太阳能系统的集成。当NIR反射涂层被设计为集成在温室中的抛物线或圆形反射器时,聚焦点中的光伏电池的反射太阳能提供电能。利用光线跟踪计算机程序,反射器的几何形状在最佳功率水平上最佳地设计。安装在焦点中的PV或TPV电池由于浓缩辐射的高热负荷而要求冷却(浓度为40-80)。研究了不同材料,GE,GASB,CIS和SI细胞的性质,以找到该应用的最佳电池。对于第二选项,将管状收集器放置在反射器的焦点中。收集器含有热油,其高达400℃的温度。该热油可用于加热斯特林电机或有机朗肯循环(ORC)。将包括管收集器的典型效率和经济效率与TPV细胞的效率进行比较。

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