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首页> 外文期刊>Renewable & Sustainable Energy Reviews >Assessment of Building Integrated Photovoltaic (BIPV) for sustainable energy performance in tropical regions of Cameroon
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Assessment of Building Integrated Photovoltaic (BIPV) for sustainable energy performance in tropical regions of Cameroon

机译:喀麦隆热带地区建筑光伏一体化(BIPV)可持续能源绩效评估

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摘要

Cameroon produces 1292 MW of electricity out of which 57% is through hydraulic resources and the remaining 43% through fossil fuels resources. The access to this electricity is limited to 10% of population in the rural areas and 50% in the urban areas. To meet the demand of electricity for domestic purpose as well as for businesses, farms and manufacturing, the squeeze on resources will become unsustainable unless renewable resources become part of the mix. In this paper, the review of Building Integrated Photovoltaic (BIPV) systems and its potential in the tropical region is presented. An analysis is made for a residential apartment fitted with BIPV as roof top in tropical climate of Cameroon to meet principle energy demand of 3 kW per day. Modelling of the system is done to predict the indoor air temperatures and humidity (LATH) considering all the internal heat sources and thermal insulation of the envelope. The analysis shows that such system is capable of reducing annual primary energy consumption from 79.58 kW h/m(2) to 13.64 kW h/m(2) in addition to reduction in the amount spent on building materials for structured roof and the labour.
机译:喀麦隆生产1292兆瓦的电力,其中57%来自水力资源,其余43%来自化石燃料资源。电力供应仅限于农村地区人口的10%,城市地区的50%。为了满足家用以及企业,农场和制造业的电力需求,除非可再生资源成为能源的一部分,否则对资源的紧缩将变得不可持续。本文介绍了建筑集成光伏(BIPV)系统及其在热带地区的潜力。对喀麦隆热带气候中装有BIPV作为屋顶的住宅公寓进行了分析,以满足每天3 kW的主要能源需求。考虑到所有内部热源和外壳的绝热,对系统进行建模以预测室内空气的温度和湿度(LATH)。分析表明,该系统除了可以减少用于结构化屋顶和人工的建筑材料上的花费外,还可以将年度一次能源消耗从79.58 kW h / m(2)降低到13.64 kW h / m(2)。

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