马来西亚气候条件下光伏板最佳相变材料的研究

Asif Durez, Muzaffar Ali, Sudhakar Kumarasamy
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摘要

由于人口的巨大增长和技术的发展,世界各地的能源需求正在快速增长。为了克服这个问题,选择一种无限的、经济的可再生能源来满足能源需求是很重要的。本文提出了一种选择最合适的相变材料的方法,可以有效地降低光伏板的温度,从而提高其整体效率和产量。本文研究了马来西亚的气候条件。每月和每日的分析进行了两个马来西亚城市(吉隆坡和彭亨)。结合熔点为21°C和27°C的相变材料,分别命名为RT21和RT27来预测最佳结果。为了确定最合适的相变材料,对Koppen气候分类中确定的两个不同的气候带(即Af和Cfb)进行了每日和每月的分析。Af气候与热带湿润气候有关,Cfbis气候则与海洋性气候有关。本研究得出的结论表明,使用PCM RT21可以降低光伏面板表面温度,从而使效率和输出功率分别提高2%和6%。而对于PCM RT27,这些数字并不那么重要。使用熔点为21°C的PCM,在5月份最热的月份,吉隆坡的最高电池温度可以从32°C降至25°C,彭亨州的最高电池温度可以从33°C降至26°C。结果表明,与PCM-RT27相比,PCM-RT21适用于气候类型为(Cfb)和(Af)的光伏制冷系统。
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Investigation of Optimum Phase Change Material for PV Panels in Malaysian Climatic Conditions
Due to an immense increase in population and technological developments, energy demand is growing at a rapid rate across the world. To overcome this issue, it is important to opt for a limitless, economical renewable energy source for energy demand. This paper presents a methodology for selecting the most suitable phase change material that can effectively reduce the PV panels temperature, thereby improving their overall efficiency and output. The climate conditions of Malaysia are under research in this paper. Monthly and Daily analysis is carried out for two Malaysian cities (Kuala Lumpur and Pahang). Phase Change Materials having a melting point of 21°C and 27°C named RT21 and RT27 respectively are used in combination to predict the best result. To determine the most suitable phase-changing material, a daily and monthly analysis was performed on two distinct climatic zones identified within the Koppen Climate Classification, namely Af and Cfb. Af climate is related to tropical humid climate while Cfbis focused on oceanic climate. The conclusions drawn from this research suggest that the using PCM RT21 results in the cooling of PV panel surface temperature, causing a consequent expansion in efficiency and electrical output of 2% and 6%, respectively. While with PCM RT27 these numbers are not that much significant. Using PCM with a melting point of 21°C, the maximum cell temperature can be lowered from 32°C to 25°C in Kuala Lumpur and 33°C to 26°C in Pahang duiing the hottest month of May. The results show that PCM-RT21 is appropriate for cooling PV systems for climate classification of (Cfb) and (Af) as compared to PCM-RT27.
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