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首页> 外文期刊>Indian Journal of Science and Technology >Performance Analysis of Photovoltaic Module by Dust Deposition in Western Rajasthan
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Performance Analysis of Photovoltaic Module by Dust Deposition in Western Rajasthan

机译:西拉贾斯坦西部灰尘模块的光伏模块性能分析

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Background: Dust soiling is a main contributing environmental issue with the climatic condition of Western Rajasthan that influences adversely the performance of solar PV technology. The deposition of dust particles reduces the solar output by hampering the solar radiation. Objectives: To explore the trend of dust soiling rate over different seasons in a year and its impact on the performance of solar photovoltaic (PV) system in Western Rajasthan in India. Especially, dust particle settlement is primarily affecting the optical properties of the PV modules, which results in declining their output electrical energy yield. Thus, it adds significantly to quantify the effect of soiling by measuring transmittance losses and soiling ratio with different dust particles. Methods: This article presents a significant loss in output energy yield of photovoltaic system with the layer by layer deposition of the different dust particles in Western Rajasthan. In the context of physical properties, the XRD and SEMEDS analysis of the collected dust sample from SOTA is carried out, and also the dust particle size study has been performed in order to observe the sediment characteristics of various dust samples in Western Rajasthan. The preliminary results depict the optical (glass transmittance) and electrical (soiling ratio) parameters strongly depend on the dust properties and its deposition density. Findings: With this consideration, the highest power loss is observed in the Bikaner dust sample (S1) due to its high transmittance loss (96.1%) and whiles the minimum for Barmer (78.4%). Applications: This study can be useful to guide the appropriate level of dust soiling mitigation on solar PV systems in an arid or particular region. It can also be decided on the optimal cleaning schedule in actual conditions in the year.
机译:背景:灰尘毁灭是西拉贾斯坦的气候条件的主要贡献环境问题,这对太阳能光伏技术的性能产生了不利影响的影响。灰尘颗粒的沉积通过妨碍太阳辐射来减少太阳能输出。目标:探讨一年内不同季节污染造成率的趋势及其对印度西拉贾斯坦的太阳能光伏(PV)系统的影响。特别是,灰尘颗粒沉降主要影响光伏模块的光学性质,这导致其输出电能产率下降。因此,它通过测量与不同粉尘颗粒的透射率损失和污染率来量化污染的影响。方法:本文介绍了在拉贾斯坦西部不同粉尘颗粒的层沉积的光伏系统输出能量产量的显着损失。在物理性质的背景下,进行了来自SOTA的收集的粉尘样品的XRD和半乳酸分析,并且还进行了粉尘粒度研究,以观察西拉贾斯坦西部各种粉尘样品的沉积物特征。初步结果描绘了光(玻璃透射率)和电气(污染比率)参数强烈取决于粉尘性质及其沉积密度。结果:借助于这种考虑,由于其高透射率损失(96.1%)和培养物的最小值(78.4%),在比康制剂粉尘样品(S1)中观察到最高功率损失(78.4%)。应用:本研究可用于指导干旱或特定区域的太阳能光伏系统对太阳能光伏系统的适当污染水平。它还可以在年度实际情况下决定最佳清洁时间表。

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