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首页> 外文期刊>Solar Energy >Exergetic and enviroeconomic analysis of semitransparent PVT array based on optimum air flow configuration and its comparative study
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Exergetic and enviroeconomic analysis of semitransparent PVT array based on optimum air flow configuration and its comparative study

机译:基于最佳气流配置的半透明PVT阵列的能动和环境经济分析及其比较研究

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摘要

This paper carries out the exergetic and enviroeconomic analysis of semi-transparent photovoltaic thermal (PVT) array (size 10.08 m x 2.16 m). Its exergetic and enviroeconomic performance has been compared with glass to tedlar i.e. opaque PVT array termed as case-A which has two integrated columns each having 18 PVT modules in series are connected in parallel and solar cell tile (SCT) based PVT array termed as case-B which has two integrated columns of 18 modules each having 36 PVT tiles (each solar cell having area 0.12 m x 0.12 m) in the module is connected in series. The semi-transparent photovoltaic thermal (PVT) array considered as case-C which also has two integrated columns each having 18 semi-transparent PVT modules in series are connected in parallel. The size of all above array (10.08 m x 2.16 m) is considered same. Four different climatic conditions of India (Delhi, Bangalore, Jodhpur and Srinagar) have been considered and the performances of the all above three cases have been compared on the basis of annual overall thermal energy and exergy gain. The comparative analysis shows that case-C has 28.8% and 12.1% lower cell temperature which yields 9.9% and 3.1% higher electrical efficiency than case-A and B respectively. Also the average outlet air temperature for case-C is higher by 40.6% and 19.1% than case-A and B respectively. The CO2 mitigation and enviroeconomic parameter for Bangalore in terms of overall thermal energy gain for case-C is 104.80 tCO(2)/annum and 1519.56 Vannum respectively, while in terms overall exergy gain is 48.76 tCO(2)/annum and 707.09 Vannum respectively. The CO2 mitigation potential of case-C is higher by 5.0% and 7.3% than case-B in terms of overall thermal energy and exergy gain respectively which indicates that case-C is a better performer than the other two cases. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文对半透明光伏热(PVT)阵列(尺寸为10.08 m x 2.16 m)进行了能量和环境经济分析。它的积极性和环境经济性能已与玻璃与乏味玻璃(即称为案例A)的不透明PVT阵列进行了比较,该阵列具有两个集成柱,每个柱具有18个串联的PVT模块并联连接,基于太阳能电池板(SCT)的PVT阵列称为案例-B具有串联的18个模块的两个集成列,每个模块在模块中具有36个PVT瓦片(每个太阳能电池的面积为0.12mx 0.12m)。被认为是情况C的半透明光伏热(PVT)阵列还具有两个集成柱,每个集成柱均具有串联的18个半透明PVT模块。以上所有阵列的大小(10.08 m x 2.16 m)被认为是相同的。考虑了印度的四种不同气候条件(德里,班加罗尔,焦特布尔和斯利那加),并根据年度总热能和火用获得量比较了以上三种情况的表现。对比分析表明,案例C的电池温度降低了28.8%和12.1%,分别比案例A和B的电效率高9.9%和3.1%。同样,情况C的平均出口空气温度分别比情况A和B高40.6%和19.1%。就案例C而言,班加罗尔的CO2减排和环境经济参数分别为104.80 tCO(2)/年和1519.56 Vannum,而就整体而言,总火用增益为48.76 tCO(2)/年和707.09 Vannum 。就总体热能和火用增益而言,案例C的CO2减排潜力分别比案例B高5.0%和7.3%,这表明案例C的表现要优于其他两种案例。 (C)2015 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Solar Energy》 |2015年第12期|1138-1145|共8页
  • 作者单位

    Govt Engn Coll, Bikaner 334004, Rajasthan, India;

    IGNOU, Sch Engn & Technol, New Delhi 110068, India;

    Indian Inst Technol Delhi, Ctr Energy Studies, New Delhi 110016, India;

    Uttar Pradesh Tech Univ, Lucknow, Uttar Pradesh, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Energy; Exergy; PVT array; SCT array; Enviroeconomic;

    机译:能源;火用;PVT阵列;SCT阵列;环境经济;

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