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Solar powered green campus: a simulation study

机译:太阳能绿色校园:仿真研究

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Large-scale deployment of the renewable energy system in India is required to achieve a target of 175 GW of green electricity by 2022. Higher educational institutes with a lot of free areas can play a vital role in reducing the conventional energy consumption and carbon footprint. The main aim of this paper is to locate and analyze the feasibility of developing 100% solar PV based academic campus at MANIT - Bhopal, India. Annual electricity consumption of MANIT, Bhopal is analyzed and accordingly 5 MW capacity solar PV based captive plant is proposed. Free open space area of the campus including rooftop area is inspected through geographical coordinates utilizing the NASA surface meteorology data and Google SketchUp. The performance of the proposed solar campus is analyzed using PVSyst and Solar Advisory Model (SAM) software. The proposed plant at MANIT campus can generate around 8000 MWh per annum of electricity to meet the 100% energy requirements of the campus with the annual reduction of 73 318.0 tonnes of carbon footprint. Development and promotion of such sustainable green concepts will be a significant step towards transforming the academic campus into an energy efficient and environmentally sustainable community. Highlights 1. Annual electricity consumption of academic campus is analyzed. 2. Land area is assessed for rooftop and land based solar installation. 3. Detailed analysis of 5 MW solar plant using PVSyst and SAM. 4. Financial and environmental benefits of sustainable green campus are highlighted.
机译:印度需要大规模部署可再生能源系统,以实现到2022年实现175吉瓦绿色电力的目标。拥有大量自由区的高等教育机构在减少常规能源消耗和碳足迹方面可以发挥至关重要的作用。本文的主要目的是找到并分析在MANIT-印度博帕尔建立100%基于太阳能光伏的学术园区的可行性。分析了博帕尔MANIT的年电力消耗,并据此提出了5 MW容量的太阳能光伏自备电厂。利用NASA地面气象数据和Google SketchUp通过地理坐标检查校园的免费开放空间区域(包括屋顶区域)。拟建的太阳能园区的性能使用PVSyst和太阳能咨询模型(SAM)软件进行了分析。拟议中的MANIT园区工厂每年可产生约8000 MWh的电力,以满足园区100%的能源需求,每年可减少73 318.0吨的碳足迹。开发和推广这种可持续的绿色概念将是朝着将大学校园转变成一个节能高效,环境可持续的社区迈出的重要一步。要点1.分析大学校园的年度用电量。 2.对屋顶和陆上太阳能装置的土地面积进行评估。 3.使用PVSyst和SAM对5兆瓦太阳能发电厂进行详细分析。 4.强调了可持续绿色校园的财务和环境效益。

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