巴格达环境下太阳能光伏/热混合系统能量与火用性能计算

D. G. Mutasher, M. F. Mohammed, Zaid Salman Obaid
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引用次数: 1

摘要

一种结合光伏板模块的系统,从水或空气中提取热量,产生热能和电能,称为太阳能光伏或太阳能热光伏热(PV/T)系统。提高光伏组件电效率的一种方法是降低组件工作时的温度,即通过提取热能。太阳能光伏/热的设计提供了一定的优势。温度每升高1℃,光电效率降低0.5%。这项工作的主要目的是通过PV/T混合水模块(光伏热模块)产生的火用来澄清热能和电能的有效性。确定了一定天数内太阳能强度、组件温度和环境温度对能量、火用和功率转换效率的影响。在上午9:00至下午3:00时段,火用效率和功率转换效率的变化值为:火用效率在2.16 - 12.27%之间,功率转换效率在5.2 - 11.2%之间,能源效率在6.89 - 14.9%之间。光伏组件的温度对电效率、热效率和火用效率有很大的影响。此外,这些效率可以通过从光伏组件表面去除热量形式的能量来提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy and Exergy Performance Calculation of Solar Photovoltaic/ Thermal Hybrid System under the Baghdad Environment
A combined system with photovoltaic panel modules, which extracts heat from water or air and produces thermal and electrical energy which is called a solar photovoltaic or solar thermal photovoltaic thermal (PV/T) system. A way to enhance the electrical efficiency of the PV module is by diminishing the temperature at which the module is working, i.e. by extracting thermal energy. The design of the solar Photovoltaic/Thermal provides certain advantages. When the temperature is increased 1°C, the photoelectric efficiency decrease by 0.5%. This work is principally aimed to clarify the effectiveness by means of the exergy generated in a PV/T hybrid water module, a photovoltaic thermal module, generating thermal and electrical energy. Were determined the energy, exergy and the efficiency of the power conversion for a certain amount of days in function of the solar intensity, the temperature of the module and environmental temperature. During the hours 9:00 am to 3:00 pm, the efficiencies of exergy and power conversion varies according to the following values, between 2.16 - 12.27% for the exergy efficiency and between 5.2 - 11.2% for the power conversion efficiency as well as, the energy efficiency varies between 6.89 – 14.9%. The temperature of the photovoltaic module has a great impact on the electrical, thermal and exergy efficiencies. Moreover, these efficiencies can be enhanced by removing energy in form of heat from the surface of the photovoltaic module.
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