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全面综述影响光伏电池板性能的环境因素:关注生命周期各阶段的排放问题。

Comprehensive review of environmental factors influencing the performance of photovoltaic panels: Concern over emissions at various phases throughout the lifecycle.

机构信息

Department of Mechanical Engineering, Army Institute of Technology Pune, Maharashtra, 411015, India.

Department of Mechanical Engineering, Vel Tech Rangarajan & Dr. Sagunthala R & D Institute of Science and Technology Chennai, Tamil Nadu, 600062, India.

出版信息

Environ Pollut. 2023 Jun 1;326:121474. doi: 10.1016/j.envpol.2023.121474. Epub 2023 Mar 23.

DOI:10.1016/j.envpol.2023.121474
PMID:36965686
Abstract

Recently, solar photovoltaic (PV) technology has shown tremendous growth among all renewable energy sectors. The attractiveness of a PV system depends deeply of the module and it is primarily determined by its performance. The quantity of electricity and power generated by a PV cell is contingent upon a number of parameters that can be intrinsic to the PV system itself, external or environmental. Thus, to improve the PV panel performance and lifetime, it is crucial to recognize the main parameters that directly influence the module during its operational lifetime. Among these parameters there are numerous factors that positively impact a PV system including the temperature of the solar panel, humidity, wind speed, amount of light, altitude and barometric pressure. On the other hand, the module can be exposed to simultaneous environmental stresses such as dust accumulation, shading and pollution factors. All these factors can gradually decrease the performance of the PV panel. This review not only provides the factors impacting PV panel's performance but also discusses the degradation and failure parameters that can usually affect the PV technology. The major points include: 1) Total quantity of energy extracted from a photovoltaic module is impacted on a daily, quarterly, seasonal, and yearly scale by the amount of dust formed on the surface of the module. 2) Climatic conditions as high temperatures and relative humidity affect the operation of solar cells by more than 70% and lead to a considerable decrease in solar cells efficiency. 3) The PV module current can be affected by soft shading while the voltage does not vary. In the case of hard shadowing, the performance of the photovoltaic module is determined by whether some or all of the cells of the module are shaded. 4) Compared to more traditional forms of energy production, PV systems offer a significant number of advantages to the environment. Nevertheless, these systems can procure greenhouse gas emissions, especially during the production stages. In conclusion, this study underlines the importance of considering multiple parameters while evaluating the performance of photovoltaic modules. Environmental factors can have a major impact on the performance of a PV system. It is critical to consider these factors, as well as intrinsic and other intermediate factors, to optimize the performance of solar energy systems. In addition, continuous monitoring and maintenance of PV systems is essential to ensure maximum efficiency and performance.

摘要

最近,太阳能光伏 (PV) 技术在所有可再生能源领域中显示出了巨大的增长。PV 系统的吸引力很大程度上取决于模块,而模块的性能主要由其性能决定。PV 电池产生的电量和功率取决于许多参数,这些参数可能是 PV 系统本身的固有参数,也可能是外部或环境参数。因此,为了提高 PV 面板的性能和寿命,必须认识到在其运行寿命期间直接影响模块的主要参数。在这些参数中,有许多因素会对 PV 系统产生积极影响,包括太阳能电池板的温度、湿度、风速、光照量、海拔和气压。另一方面,模块可能同时受到环境压力的影响,如灰尘积累、遮挡和污染因素。所有这些因素都会逐渐降低 PV 面板的性能。本综述不仅提供了影响 PV 面板性能的因素,还讨论了通常会影响 PV 技术的降解和失效参数。主要要点包括:1. 模块表面形成的灰尘量会影响光伏模块每天、每季度、季节性和每年从光伏模块中提取的总能量。2. 高温和高湿度等气候条件会影响太阳能电池的运行,导致太阳能电池效率大幅下降。3. 软阴影会影响 PV 模块的电流,而电压不会发生变化。在硬阴影的情况下,光伏模块的性能取决于模块的一些或所有电池是否被遮挡。4. 与更传统的能源生产形式相比,PV 系统对环境有许多优势。然而,这些系统在生产阶段会产生温室气体排放。总之,本研究强调了在评估光伏模块性能时考虑多个参数的重要性。环境因素会对 PV 系统的性能产生重大影响。考虑这些因素以及固有因素和其他中间因素对于优化太阳能系统的性能至关重要。此外,对 PV 系统进行持续监测和维护对于确保最大效率和性能至关重要。

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