巴勒斯坦条件下单面和双面光伏组件的比较模拟

Adel Juaidi , Mahmoud Kobari , Ahmad Mallak , Ahmad Titi , Ramez Abdallah , Moath Nassar , Aiman Albatayneh
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引用次数: 0

摘要

在上一个时期,太阳能获得了很大的吸引力,由于其巨大的潜力和优势,预计将取代不可再生能源,其中一个优势是太阳能是可扩展的,这意味着它可以在工业规模或更小的规模上使用,另一个优点是太阳能是一种清洁的能源,这意味着您不会对环境造成污染,此外,太阳能是未来的能源,因为它的成本正在下降,不可再生能源变得越来越昂贵。该项目旨在对双面和单面太阳能电池板在不同条件下的性能进行比较分析。调查包括检查不同反照率水平和光伏电池板下表面类型的影响,包括沙子、白色油漆、黑色沥青或人造草。著名的软件工具PVsyst将用于模拟和分析光伏系统。这项研究的地点是位于巴勒斯坦纳布卢斯的安纳贾国立大学。光伏电池板将朝向正南,倾斜角度为28˚。通过细致的模拟和彻底的分析,这项研究试图对不同环境下双面和单面太阳能电池板的对比性能特征提供全面的见解。最终目标是提供有关这些光伏技术的适用性和最佳利用的宝贵知识。该研究旨在评估和比较不同场景下双面和单面太阳能电池板的电力输出、能量产出和整体性能。该项目将分析双面面板由于背面辐照度反射而获得的能量增益、反照率对双面面板性能的影响以及遮光对两种面板类型的影响等因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A comparative simulation between monofacial and bifacial PV modules under palestine conditions

During the last period, solar energy gained a lot of attraction and is expected to be the replacement for non-renewable energy due to its great potential and advantages, one of these advantages is that solar energy is scalable, which means it can be used on an industrial scale or lesser, another advantage is that solar energy is a clean source, this means it causes no pollution to the environment, in addition, solar energy is the future, as its cost is going down and non-renewable energy is becoming more and more expensive. This project aims to conduct a comparative analysis of the performance of bifacial and monofacial solar panels under diverse conditions. The investigation involves examining the influence of varying albedo levels and the type of surface beneath the PV panels, including sand, white paint, black asphalt, or artificial grass. The renowned software tool PVsyst will be employed to simulate and analyze PV systems. The location selected for this study is An-Najah National University in Nablus, Palestine. The PV panels will be oriented towards the true south, and a tilt angle of 28˚ will be employed. Through meticulous simulations and thorough analysis, this research seeks to provide comprehensive insights into the contrasting performance characteristics of bifacial and monofacial solar panels across different environmental contexts. The ultimate objective is to contribute valuable knowledge regarding the suitability and optimal utilization of these PV technologies. The study aims to evaluate and compare the electrical output, energy yield, and overall performance of bifacial and monofacial solar panels under different scenarios. The project will analyze factors such as the energy gain achieved by the bifacial panels due to rear-side irradiance reflection, the impact of albedo on the performance of bifacial panels, and the influence of shading on both panel types.

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