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Modelling an off-grid integrated renewable energy system for rural electrification in India using photovoltaics and anaerobic digestion

机译:利用光伏和厌氧消化模拟印度农村电气化的离网综合可再生能源系统

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摘要

This work describes the design optimisation and techno-economic analysis of an offgrid Integrated Renewable Energy System (IRES) designed to meet the electrical demand of a rural village location in West Bengal – India with an overall electrical requirement equivalent to 22 MWh year-1. The investigation involved the modelling of seven scenarios, each containing a different combination of electricity generation (anaerobic digestion with biogas combined heat and power (CHP) and photovoltaics) and storage elements (Vanadium redox batteries, water electrolyser and hydrogen storage with fuel cell). Microgrid modelling software HOMER was combined with additional modelling of anaerobic digestion, to scale each component in each scenario considering the systems' ability to give a good quality electricity supply to a rural community. The integrated system which contained all of the possible elements including except hydrogen production and storage presented the lowest capital ($US 71k) and energy cost ($US 0.289 kWh-1) compared to the scenarios with a single energy source. The biogas CHP was able to meet the electrical load peaks and variations and produced 61% of the total electricity in the optimised system, while the photovoltaics met the daytime load and allowed the charging of the battery which was subsequently used to meet base load at night.
机译:这项工作描述了离网综合可再生能源系统(IRES)的设计优化和技术经济分析,该系统旨在满足印度西孟加拉邦一个乡村地区的电力需求,其一年的总电力需求相当于22 MWh。该调查涉及七个场景的建模,每个场景包含发电(厌氧消化,沼气热电联产(CHP)和光伏发电)和存储元素(钒氧化还原电池,电解水和燃料电池储氢)的不同组合。微电网建模软件HOMER与厌氧消化的其他建模相结合,考虑了系统为农村社区提供优质电力的能力,可以在每种情况下扩展每个组件的规模。与使用单一能源的方案相比,包含除氢气生产和存储以外的所有可能元素的集成系统呈现出最低的资金成本(7.1万美元)和能源成本(0.289 kWh-1)。沼气热电联产能够满足电力负荷的峰值和变化,并在优化的系统中产生了61%的总电量,而光伏发电则满足了白天的负荷并允许对电池充电,该电池随后被用来满足夜间的基本负荷。

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