利用RETScreen对孟加拉国八个分区并网太阳能光伏系统进行设计、分析和优化

Shagorika Mukherjee, M. Razzak
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引用次数: 6

摘要

利用RETScreen以及NASA的位置和太阳辐射数据,对孟加拉国每个分区的100千瓦并网太阳能光伏系统进行了设计、技术和财务分析以及优化。放置太阳能电池板的坡度和方位角影响电池板对太阳辐射的吸收,这对太阳能电网产生的电量、太阳能电网的技术和财政方面有相当大的影响。孟加拉国是一个亚洲国家,有八个区。由于不同的地理位置,太阳辐射量入射到分区有很大的不同。因此,在所有分区中以相同的坡度和方位角放置太阳能电池板不能使电池板吸收最大数量的太阳辐射。本文讨论了100kW并网太阳能光伏系统的设计,进行了技术分析,并论证了在孟加拉国不同分区放置太阳能电池板的最佳坡度和方位角。本文还对各个部门的太阳能电网进行了财务分析。优化后的太阳能电网每年可减少约166吨二氧化碳排放,相当于每年减少使用30.4辆汽车和轻型卡车。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design, analysis and optimization of grid-connected solar photovoltaic system using RETScreen in eight divisions of Bangladesh
Design, technical and financial analysis, and optimization of 100 kW grid connected solar photovoltaic system at each division of Bangladesh have been carried out using RETScreen along with NASA's data of location and solar radiation. Slope and azimuth of placing solar panels affect absorption of solar irradiation by the panels and this has considerable impact on the amount of electricity being generated by a solar grid, the technical and financial aspects of the solar grid. Bangladesh is an Asian country having eight divisions. Due to varying geographical locations, the amount of solar radiation being incident on the divisions vary significantly. Thus, placing solar panels at the same slope and azimuth in all the divisions does not allow the panels to absorb maximum amount of solar radiation. This paper discusses about the design of 100kW grid connected solar photovoltaic system, performs technical analysis and demonstrates the optimum slope and azimuth of placing solar panels at different divisions of Bangladesh. This paper also represents financial analysis of the solar grid for all the divisions. The optimized solar grid is capable of reducing approximately 166 tons of carbon dioxide emission annually which is equivalent to eliminating the use of 30.4 cars and light trucks annually.
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