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Investigation on a building-integrated passive solar energy technology for air ventilation, clean water and power

机译:空气通风,清洁水和力量建筑集成被动太阳能技术的调查

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摘要

The development of an integrated solar energy system with multiple outputs is necessary for achieving sustainability for countries like India. A building-integrated passive solar energy technology (BIPSET) is developed for the generation of power, and water in addition to the air ventilation for the attached building prototype. The building prototype is scaled down to the model of the living room proposed in the "Chief Minister's solar-powered green house" scheme, Govt of Tamil Nadu, India. The system consists of solar photovoltaic (PV) and solar still, integrated with chimney. Experimental analysis shows an average of 12 air changes per hour of ventilation inside the room using the thermal energy gained by the solar PV in the BIPSET. Daily average inlet air velocity of 0.14 m/s is measured in the windows and is in accordance with the international standard ISO 7730:2005. The electrical efficiency of the PV system is improved from 4% to 17% in BIPSET compared to standalone PV System. Solar still performance is improved from 3 to 11% in the integrated system. Energy, environment and economic analysis are carried out for the BIPSET. The energy payback for the solar PV integrated with chimney is better than the standalone PV system. Lifecycle assessment is carried out for the BIPSET following CML-2001 methodology using SOLIDWORKS sustainability tool. This study implies that the present system is environment-friendly during its operation and its end of life. From the economic analysis, the unit cost of electricity for the solar PV integrated with chimney is 18% less when considering 30% government subsidiary for PV panels. The analysis indicates that the present integrated system is technically and economically feasible and is environment friendly.
机译:具有多种输出的集成太阳能系统的开发对于实现印度等国家的可持续性是必要的。除了附着的建筑原型的空气通风之外,还开发了建筑物集成的无源太阳能技术(Bipset)。建筑原型被缩小到印度泰米尔纳德邦政府的“首席执行官太阳能绿色房屋”计划中提出的客厅型号。该系统由太阳能光伏(PV)和太阳能组成,仍然与烟囱集成。实验分析显示房间内每小时每小时通风12空气变化,使用鲍普斯特中的太阳能光伏获得的热能。在窗户中测量每日平均入口空气速度为0.14米/秒,并符合国际标准ISO 7730:2005。与独立光伏系统相比,PV系统的电效率从鲍普斯特的4%到17%提高。太阳能性能从集成系统中的3%增加到11%。为鲍普斯特进行了能源,环境和经济分析。与烟囱集成的太阳能光伏电路的能量回报优于独立光伏系统。使用SolidWorks可持续性工具,在CML-2001方法之后对Bipset进行生命周期评估。本研究意味着本系统在其运作期间是环保的,其生命结束。从经济分析,在考虑PV面板的政府子公司30%的政府子公司时,与烟囱集成的太阳能光伏电力单位成本减少18%。分析表明,本集成系统在技术上和经济上可行,是环保的。

著录项

  • 来源
    《Energy Conversion & Management》 |2020年第5期|112739.1-112739.15|共15页
  • 作者单位

    Natl Inst Technol Tiruchirappalli Dept Energy & Environm Tiruchirappalli 620015 Tamil Nadu India;

    Natl Inst Technol Tiruchirappalli Dept Energy & Environm Tiruchirappalli 620015 Tamil Nadu India;

    Natl Inst Technol Tiruchirappalli Dept Energy & Environm Tiruchirappalli 620015 Tamil Nadu India;

    Natl Inst Technol Tiruchirappalli Dept Chem Engn Tiruchirappalli 620015 Tamil Nadu India;

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

    Solar energy; Integrated system; Passive design; Air ventilation; Lifecycle assessment;

    机译:太阳能;集成系统;被动设计;空气通风;生命周期评估;

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