揭示灰尘在炎热气候条件下对光伏性能的隐藏优势

Omar A. Abdulrazzaq, Sura N. Atewi, Raghad A. Tuama, Akram K. Hasan, Muatez Mohammed
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摘要

本研究调查了温度和灰尘对光伏(PV)系统性能的综合影响。调查于 2022 年夏季在巴格达(北纬 33.28°,东经 44.39°)进行,巴格达以气温极高而闻名。研究考察了两种不同的情况:多尘日和多尘面板(通常发生在多尘日之后)。研究最初比较了清洁和多尘光伏组件在严酷夏季条件下的性能,随后将分析扩展到可再生能源与环境研究中心大楼的并网光伏系统。结果显示,温度主要降低电压,而灰尘主要降低电流。然而,在沙尘暴期间,温度会明显降低到平均温度以下,从而可能导致光伏输出增加。这就产生了双重效应,温度的负面影响被沙尘部分抵消,因为沙尘减轻了环境温度,导致光伏输出的减少相对较小。这种现象在高温下最为明显。例如,清洁组件的损耗率为 24%,而灰尘组件的损耗率为 6%,这突出表明了灰尘的有利影响。然而,在低温和中温条件下,灰尘仍然会产生不利影响。这一发现对于在类似环境下优化光伏系统效率具有重要意义。
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Revealing the Hidden Benefits of Dust for Photovoltaic Performance in Hot Climates
This study investigates the combined impact of temperature and dust on the performance of a photovoltaic (PV) system. The investigation took place during the summer of 2022 in Baghdad (33.28°N, 44.39°E), known for its extremely high temperatures. Two distinct scenarios were examined: a dusty day and a dusty panel (typically occurring after a dusty day). The research initially compared the performance of clean and dusty PV modules under severe summer conditions and later extended its analysis to the on-grid PV system of the Renewable Energy and Environment Research Center building. The results reveal that temperature predominantly reduces voltage, while dust primarily diminishes current. However, during dust storms, temperatures significantly drop below their average, potentially leading to an increase in PV output. This creates a dual effect where the negative impact of temperature is partially offset by dust because dust mitigates the ambient temperature, resulting in a relatively smaller decrease in PV output. This phenomenon is most pronounced at high temperatures. For instance, the loss ratio for a clean module was 24%, whereas for a dusty module, it was 6%, highlighting this beneficial impact of dust. However, at low and moderate temperatures, dust continues to have a detrimental effect. This finding is significant for optimizing PV system efficiency in similar environmental contexts.
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