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An oriented-design simplified model for the efficiency of a flat plate solar air collector

机译:平板太阳能集热器效率的定向设计简化模型

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摘要

In systems design, suitably adapted physical models are required. Different modelling approaches for a solar air collector were studied in this paper. First, a classical model was produced, based on a linearization of the conservation of energy equations. Its resolution used traditional matrix methods. In order to improve the possibilities for use in design, the behaviour of the collector was next expressed in terms of efficiency. Lastly, simplified models constructed from the results obtained with the classical linearized model, and explicitly including the design variables of the collector, were proposed. These reduced models were then evaluated in terms of Parsimony, Exactness, Precision and Specialisation (PEPS). It was concluded that one of them (D2), using a low number of variables and of equations, is well suited for the design of solar air collector coupled with other sub-systems in more complex devices such as solar kiln with energy storage
机译:在系统设计中,需要适当调整的物理模型。本文研究了太阳能集热器的不同建模方法。首先,基于能量方程守恒的线性化,产生了经典模型。其分辨率使用传统的矩阵方法。为了提高在设计中使用的可能性,接下来以效率表示收集器的行为。最后,提出了根据经典线性化模型获得的结果构建的简化模型,并明确包括收集器的设计变量。然后根据简约性,精确性,精确度和专业化(PEPS)评估这些简化的模型。得出的结论是,其中一个变量(D2)使用少量变量和方程,非常适合在更复杂的设备(例如带有储能的太阳能窑炉)中设计与其他子系统结合的太阳能空气收集器

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