评估和分析 Al- Musayyib 技术学院的转位因子,为固定和季节性方向设定最佳倾斜角度

Bushra Majed Hameed Jaseem, Muhammed Salah Sadiq Al-Kafaji
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引用次数: 0

摘要

换位系数(TF)可提高光伏(PV)系统的发电能力。观察到的现象表明,集热器平面的倾斜度会改变发电量。本研究的目的是评估和比较两种不同类型的朝向(固定标题平面和季节性倾斜调整)对位于伊拉克穆萨耶布技术学院(MTC)电气工程技术系的光伏系统输出功率的影响。该地点的具体坐标为北纬 32°46′59.99″,东经 44°19′0.01。模拟将使用 PVSYST 软件中的 Perez 模型进行,重点是功率为 3000 Wp 的独立系统。所显示的结果取决于最高倾斜角度(TF),固定倾斜平面的最佳倾斜角度为 28o,季节性倾斜调整的最佳倾斜角度为(夏季 12o,冬季 50o)。此外,研究结果表明,在该地点使用季节性倾斜调整比使用固定倾斜平面更能获得最大的系统生产功率,同时保持较低的成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluating and Analyzing The Transposition Factor In Al- Musayyib Technical College to Setting The Optimal Tilt Angle for Fixed And Seasonal Orientation
The transposition factor (TF) enhances the photovoltaic (PV) systems' capacity to generate output power. The observed phenomenon denotes the alteration in power production resulting from the inclination of the collector plane. The objective of this study is to assess and compare the effects of two different types of orientation, fixed titled plane and seasonal tilt adjustment, on the power output of a photovoltaic system located in the electrical engineering technologies department at Al- Musayyib Technical College (MTC) in Iraq. The specific coordinates of the location are latitude 32° 46′ 59.99″ N and longitude 44° 19′ 0.01 E . The simulation will be conducted using the Perez model in PVSYST software, focusing on a standalone system with a power capacity of 3000 Wp. The results that were displayed are dependent on the highest (TF), the optimal tilt angle for a fixed tilted plane is (28o), and for seasonal tilt adjustment is (12o in summer and 50o in winter),. In addition, the results showed that applying the seasonal tilt adjustment was preferable to using a fixed titled plane in this location to gain the maximum amount of system production power while maintaining a low cost.
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