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首页> 外文期刊>Energy Conversion & Management >Performance study of a novel multi-functional Trombe wall with air purification, photovoltaic, heating and ventilation
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Performance study of a novel multi-functional Trombe wall with air purification, photovoltaic, heating and ventilation

机译:新型空气净化,光伏,加热和通风的多功能Trombe墙的性能研究

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摘要

A novel multi-functional passive solar wall, i.e., photocatalytic-photovoltaic-Trombe wall (PC-PV-Trombe wall), which can obtain heat, electricity and fresh air simultaneously was proposed firstly. Then a multi-physical fields (velocity, temperature and concentration fields) coupling model was established to study the performance of PC-PV-Trombe wall. The effects of channel height and width on the thermal, electrical and degradation performance of PC-PV-Trombe wall were analyzed. Finally, the performance of PC-PV-Trombe wall, built-in PV-Trombe wall and PC-Trombe wall were compared under different solar radiation intensities and ambient temperatures. The results show that the ventilation volume, thermal efficiency, heat output, electrical efficiency and the clean air delivery rate of PC-PV-Trombe wall present different trends of increase or decrease with the change of channel height and width. As opposed to the effect on the electrical efficiency, the lower ambient temperature has a negative influence on the ventilation volume, thermal performance and air purification performance, especially for the condition of lower solar radiation intensity. PC-PV-Trombe wall can realize the comprehensive utilization for air purification, photovoltaic, heating and ventilation of solar energy and the total efficiency can reach a maximum of 0.67.
机译:首先提出了一种新型的多功能无源太阳能墙,即光催化-光伏-Trombe墙(PC-PV-Trombe墙),它可以同时获取热,电和新鲜空气。然后建立了一个多物理场(速度,温度和浓度场)耦合模型来研究PC-PV-Trombe墙的性能。分析了通道高度和宽度对PC-PV-Trombe墙的热,电和降解性能的影响。最后,比较了在不同太阳辐射强度和环境温度下PC-PV-Trombe墙,内置PV-Trombe墙和PC-Trombe墙的性能。结果表明,随着通道高度和宽度的变化,PC-PV-Trombe墙的通风量,热效率,热输出,电效率和清洁空气输送率呈现出不同的增减趋势。与对电效率的影响相反,较低的环境温度对通风量,热性能和空气净化性能具有负面影响,尤其是在较低的太阳辐射强度条件下。 PC-PV-Trombe墙可以实现空气净化,光伏,太阳能供热和通风的综合利用,总效率最高可达到0.67。

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