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A two dimensional thermal network model for a photovoltaic solar wall

机译:光伏太阳能墙的二维热网络模型

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摘要

A two dimensional thermal network model is proposed to predict the temperature distribution for a section of photovoltaic solar wall installed in an outdoor room laboratory in Concordia University, Montreal, Canada. The photovoltaic solar wall is constructed with a pair of glass coated photovoltaic modules and a polystyrene filled plywood board as back panel. The active solar ventilation through a photovoltaic solar wall is achieved with an exhaust fan fixed in the outdoor room laboratory. The steady state thermal network nodal equations are developed for conjugate heat exchange and heat transport for a section of a photovoltaic solar wall. The matrix solution procedure is adopted for formulation of conductance and heat source matrices for obtaining numerical solution of one dimensional heat conduction and heat transport equations by performing two dimensional thermal network analyses. The temperature distribution is predicted by the model with measurement data obtained from the section of a photovoltaic solar wall. The effect of conduction heat flow and multi-node radiation heat exchange between composite surfaces is useful for predicting a ventilation rate through a solar ventilation system.
机译:提出了二维热网络模型,以预测安装在加拿大蒙特利尔康科迪亚大学室外实验室中的一部分光伏太阳能墙的温度分布。光伏太阳能墙由一对玻璃涂层的光伏模块和一块聚苯乙烯填充的胶合板作为背板构成。通过安装在室外房间实验室中的排风扇,可以实现通过光伏太阳能墙的主动太阳能通风。建立了稳态热网络节点方程,以用于光伏太阳能墙的一部分的共轭热交换和热传递。采用矩阵解法求解电导和热源矩阵,通过二维热网络分析获得一维导热和热传递方程的数值解。该模型利用从光伏太阳能墙截面获得的测量数据来预测温度分布。复合表面之间的传导热流和多节点辐射热交换的效果对于预测通过太阳能通风系统的通风率很有用。

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