Experimental Study on Performance Enhancement of a Photovoltaic Module Incorporated with CPU Heat Pipe—A 5E Analysis

光伏系统 按来源划分的电力成本 投资回收期 汽车工程 环境科学 电气工程 包含能量 功率(物理) 工程类 核工程 发电 物理 生产(经济) 热力学 经济 宏观经济学
作者
S. Praveenkumar,Aminjon Gulakhmadov,Ephraim Bonah Agyekum,Naseer T. Alwan,Vladimir Ivanovich Velkin,Sharipov Parviz Gulmurodovich,Murodbek Safaraliev,Xi Chen
出处
期刊:Sensors [Multidisciplinary Digital Publishing Institute]
卷期号:22 (17): 6367-6367 被引量:24
标识
DOI:10.3390/s22176367
摘要

As is already known, solar photovoltaic (PV) technology is a widely accepted technology for power generation worldwide. However, it is scientifically proven that its power output decreases with an increase in the temperature of the PV module. Such an important issue is controlled by adopting a number of cooling mechanisms for the PV module. The present experimental study assesses the effect of a fanless CPU heat pipe on the performance of a PV module. The experiment was conducted in June in real weather conditions in Yekaterinburg, Russian Federation. The comparative analysis of two PV panels (i.e., cooled, and uncooled) based on the electrical energy, exergy performance, economic, embodied energy and energy payback (5E) for the two systems is presented and discussed. The key results from the study are that the average temperature reduction from the cooling process is 6.72 °C. The average power for the cooled panel is 11.39 W against 9.73 W for the uncooled PV panel; this represents an increase of 1.66 W for the cooled module. Moreover, the average improvements in the electrical efficiency, and embodied energy recorded for a cooled PV panel 2.98%, and 438.52 kWh, respectively. Furthermore, the calculations of the levelized cost of energy (LCE) for the cooled PV panel indicate that it can range from 0.277-0.964 USD/kWh, while that for the uncooled PV panel also ranges from 0.205-0.698 USD/kWh based on the number of days of operation of the plant.
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