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A solvable thermal circuit for modelling PVT air collectors

机译:用于模拟PVT空气收集器的可解热回路

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The steady state thermal analysis of a photovoltaic thermal (PVT) air collector typically involves solving energy balance equations to determine temperatures as a function of distance along the collector and to calculate the thermal energy output. While this approach is appropriate for a simple PVT air collector model, for more detailed models the resulting energy balance equations increase significantly in complexity. In this paper it is demonstrated how an RC circuit can be used to model a PVT air collector under steady state conditions to determine the thermal parameters of the collector. This is achieved by utilising a capacitor in the circuit, which acts as an analog integrator. Simulation of the circuit is used to illustrate the equivalence of this approach with conventional steady state models. The advantage of using a solvable circuit is that models of PVT air collectors of increasing complexity can be quickly and easily analysed by simply adding additional components to the circuit. Crown Copyright (C) 2016 Published by Elsevier Ltd. All rights reserved.
机译:光伏热(PVT)空气收集器的稳态热分析通常涉及求解能量平衡方程,以确定温度作为沿着收集器的距离的函数,并计算热能输出。虽然此方法适用于简单的PVT空气收集器模型,但对于更详细的模型,所产生的能量平衡方程式的复杂性会大大增加。在本文中,我们演示了如何在稳定状态下使用RC电路对PVT空气收集器进行建模,以确定收集器的热参数。这是通过在电路中利用一个电容器来实现的,该电容器充当模拟积分器。电路仿真用于说明这种方法与常规稳态模型的等效性。使用可解决电路的优势在于,只需将其他组件添加到电路中,即可快速轻松地分析复杂性不断提高的PVT空气收集器的模型。 Crown版权所有(C)2016,由Elsevier Ltd.发行。保留所有权利。

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