基于微热管阵列的新型光伏-热电系统性能研究

作者:张桠熙 孟杉 朱娜 胡平放 雷飞 罗振宇
单位:华中科技大学 北京市工程地质研究所
摘要:带微热管的光伏-热电系统用在实际建筑中时,全年运行过程中会出现热电模块的冷热端不断变换时热量损失与浪费的情况。为解决这一问题,本文提出了一种利用三通阀切换热流方向的微热管,并比较了按时刻和按季节切换三通阀方向的2种模式。基于Simulink软件建立了该新型光伏-热电系统的数值模型,根据全年运行过程中室内外温度变化不断切换三通阀方向来分析系统性能,同时与普通光伏-热电系统进行了比较,结果表明,按时刻切换三通阀微热管的系统效率更高,可达18.75%。
关键词:微热管光伏热电三通阀数值模型
作者简介:张桠熙,男,1998年生,在读硕士研究生;*朱娜(通信作者)430074湖北省武汉市洪山区珞喻路1037号,E-mail:bezhuna@hust.edu.cn;
基金:中央高校基本科研业务费资助项目“结合相变材料的光伏与热电联合发电的深入研究”(编号:2020JYCXJJ049);
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Performance of a novel photovoltaic-thermoelectric system based on micro-channel heat pipe array
Zhang Yaxi Meng Shan Zhu Na Hu Pingfang Lei Fei Luo Zhenyu
(Huazhong University of Science and Technology Beijing Institute of Geo-Engineering)
Abstract: In the actual application of the photovoltaic-thermoelectric system with micro-channel heat pipe in buildings, the heat loss and waste will occur when the hot and cold ends of the thermoelectric devices constantly change during the whole year's operation. In order to solve this problem, this paper proposes a kind of micro-channel heat pipe which uses a three-way valve to switch the direction of heat flow, and compares two modes of changing the direction of three-way valve by time and by season. Based on the Simulink software, a numerical model of the new type of photovoltaic-thermoelectric system is established. The system performance is analysed by changing the direction of three-way valve continuously according to the annual indoor and outdoor temperature, and is compared with the traditional photovoltaic-thermoelectric system at the same time. The results show that the system efficiency of changing the three-way valve by time is higher, reaching 18.75%.
Keywords: micro-channel heat pipe; photovoltaic; thermoelectric; three-way valve; mathematic model;
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