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利用孟加拉国达卡市地铁6号线的现有基础设施整合基于光伏的能源生产。

Integrating PV-based energy production utilizing the existing infrastructure of MRT-6 at Dhaka, Bangladesh.

作者信息

Islam Md Ashraful, Al Mamun Abdulla, Ali M M Naushad, Ashique Ratil H, Hasan Abul, Hoque Md Majedul, Maruf Md Hasan, Al Mansur Md Ahmed, Shihavuddin A S M

机构信息

Department of EEE, Green University of Bangladesh, Dhaka, Bangladesh.

出版信息

Heliyon. 2024 Jan 10;10(2):e24078. doi: 10.1016/j.heliyon.2024.e24078. eCollection 2024 Jan 30.

Abstract

In a very dense urban landscape, incorporating renewables becomes challenging due to a lack of space, planning, and mindset. Utilization of already existing large infrastructures in combination with existing technology and necessary adaptation can create the right synergy for harnessing renewables like solar. This paper proposes the installation of a solar power plant in Dhaka, Bangladesh, using available space on Metro Rail Line 6 to meet the increasing demand for clean and renewable energy. The proposed system involves the selection of suitable space, and PV panels, the calculation of annual electricity generation, and performing financial and environmental analyses. The proposed on-grid/grid-tied system offers the advantage of reducing dependence on power supplied to the grid, resulting in lower energy costs, and promoting the use of green energy. The system has a payback period of 7.7 years and a return on investment of 45.7 %. It is estimated that the system saves 14,053.203 tons of CO emissions per year and 281,064.06 tons of CO emissions over its lifetime. Also, the grid life cycle emission is 584 gCO/kWh, and the system life cycle emission is 39,119.4 tCO, which further proves that it is a feasible solution to meeting energy demands while reducing the dependency on fossil fuels and promoting sustainable energy utilization. The results of simulations run using PVsyst and HOMER confirm the economic viability of the proposed solar power station, supporting its viability. The levelized energy cost (LCOE), as projected by PVsyst, is $0.09 per kWh, nearly matching HOMER's prediction of $0.0835. This convergence of results from several simulation tools supports the solar power plant's predicted cost-effectiveness, demonstrating its potential as a key player in the effort to create a greener and more affordable energy landscape.

摘要

在非常密集的城市景观中,由于缺乏空间、规划和观念,纳入可再生能源变得具有挑战性。利用现有的大型基础设施,结合现有技术和必要的改造,可以为利用太阳能等可再生能源创造合适的协同效应。本文提议在孟加拉国达卡利用地铁6号线的可用空间安装一座太阳能发电厂,以满足对清洁和可再生能源日益增长的需求。提议的系统包括选择合适的空间和光伏板、计算年发电量以及进行财务和环境分析。提议的并网系统具有减少对电网供电依赖的优势,从而降低能源成本,并促进绿色能源的使用。该系统的投资回收期为7.7年,投资回报率为45.7%。据估计,该系统每年可节省14,053.203吨二氧化碳排放量,其使用寿命内可节省281,064.06吨二氧化碳排放量。此外,电网生命周期排放量为584克二氧化碳/千瓦时,系统生命周期排放量为39,119.4吨二氧化碳,这进一步证明它是满足能源需求的可行解决方案,同时减少对化石燃料的依赖并促进可持续能源利用。使用PVsyst和HOMER运行的模拟结果证实了提议的太阳能电站的经济可行性,支持其可行性。PVsyst预测的平准化能源成本(LCOE)为每千瓦时0.09美元,几乎与HOMER预测的0.0835美元相符。几种模拟工具结果的这种趋同支持了太阳能发电厂预测的成本效益,证明了其作为创造更绿色、更经济实惠能源格局努力中的关键角色的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/98af/10826660/6d04fa63d1c7/gr1.jpg

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