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一种基于微热管阵列的太阳能BIPVT系统实验研究

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以一种平板微热管阵列式的太阳能光伏光热和建筑一体化(building integrated photovoltaic/thermal system-BIPVT)系统为研究对象,研究了2023年1月10日系统的相关热电特性,结果表明:在日均太阳辐射为540。8 W/m2,日均室外温度为4℃时,微热管阵列式太阳能BIPVT系统的日均室内温度为23。6℃,可以满足冬季室内基本取暖要求;系统进出水口日均温差为0。9℃,进出风口日均温差为13。6℃,具有很好的热风效果;系统的日均电效率为9。6%,日均热水效率为34%,日均综合效率为59。6%,将平板微热管阵列用于BIPVT系统,可以降低电池背板温度,提高发电效率。
Experimental Study of a Solar BIPVT System Based on a Micro Heat Pipe Array
(BIPVT)system based on a flat panel micro-heat pipe array is studied,and the relevant thermoelectric characteristics of the system on January 10,2023 are studied.A flat plate micro heat pipe array solar photovoltaic photothermal and building integrated photovoltaic/thermal system(BIPVT)system is studied.The relevant ther-moelectric characteristics of the system on January 10,2023 are studied.The results show that:in the average daily solar radiation of 540.8 W/m2,average daily outdoor temperature is 4℃and the average daily indoor temperature of the microtubular array solar BIPVT system is 23.6℃,which can meet the basic indoor heating requirements in winter;the average daily temperature difference between the water inlet and outlet of the system is 0.9℃,and the average daily temperature difference between the inlet and outlet of the system is 13.6℃,which is a very good effect of the hot air;the average daily electrical efficiency of the system is 9.6%.The average daily hot water effi-ciency is 34%,and the average daily integrated efficiency is 59.6%.Using the flat plate micro heat pipe array for BIPVT system can reduce the temperature of the battery backplane and improve the power generation efficiency.

micro heat pipethermal-electrical performanceBIPVToverall efficiency

顾金寿、柴云娥、魏巍、杨林艳、刘孝敏、刘叶瑞

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甘肃自然能源研究所,甘肃 兰州 730046

甘肃省低碳建筑工程技术研究中心,甘肃 兰州 730046

微热管 热电特性 BIPVT 综合效率

2024

绿色科技
花木盆景杂志社

绿色科技

影响因子:0.365
ISSN:1674-9944
年,卷(期):2024.26(12)