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Economic and environmental analysis of a novel rural house heating and cooling system using a solar-assisted vapour injection heat pump

机译:一种使用太阳能辅助蒸汽喷射热泵的新型农村供暖和冷却系统的经济环境分析

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摘要

An efficient low-carbon system is proposed to meet the heating and cooling demands of rural houses in cold regions. Mini-channel solar panels incorporating a novel multiple-throughout-flowing loop are used for heat collection, whilst a vapour injection air source heat pump (VI-ASHP) is innovatively combined with an underfloor heating and cooling system. To demonstrate the system, a multiple-throughout-flowing mini-channel solar thermal panel array of 36 m(2) and a VI-ASHP of 40 kW heating capacity have been built and tested. Subsequently, mathematical models of the solar-assisted VI-ASHP system are established and compared with the experimental data. Based on the validated models, the energetic, economic and environmental performance is investigated under the typical weather conditions for a northern Chinese city (Taiyuan). The results indicate that, for a common rural house employing the proposed novel system, the proportion of the annual heat requirement, cooling load and hot water heating energy provided by solar thermal energy, photovoltaic energy and electricity from the power grid is 74.6%, 6.9%, and 18.5% respectively, thus giving a total energy supply proportion of 81.5% from solar energy. In addition, compared with a coal-powered system, our system has a cost payback period of 6.52 years and a life-cycle net cost saving of 56328.4RMB, thus the proposed system provides a greater economic performance. Furthermore, it can save 5tons of anthracite coal and reduce carbon emissions by 12.1tons annually. The proposed solar-assisted VI-ASHP has the potential to fulfil heating and cooling demands whilst reducing carbon emissions in northern China.
机译:提出了一种高效的低碳系统,以满足寒冷地区农村房屋的加热和冷却需求。迷你通道太阳能电池板结合了一种新型的多次流动环,用于散热收集,同时蒸汽注入空气源热泵(VI-ASHP)与地板加热和冷却系统创造性地结合。为了证明系统,已经建立并测试了36米(2)的多次流动的微型通道太阳能热面板阵列和40 kW加热容量的VI-ASHP。随后,建立了太阳能辅助VI-ASHP系统的数学模型,并与实验数据进行了比较。根据经过验证的模型,在中国北部城市(太原)的典型天气条件下调查了能量,经济和环境绩效。结果表明,对于采用拟议的新型系统的普通农村房屋,由太阳能热能,光伏能量和电网电网提供的年热需求,冷却负荷和热水供热的比例为74.6%,6.9分别为18.5%,从而达到太阳能的总能量供应比例为81.5%。此外,与煤炭系统相比,我们的系统具有6.52岁的成本投资回收期,持续生命周期净成本节省56328.4RMB,因此拟议的系统提供了更大的经济性能。此外,它可以节省5吨无烟煤煤,每年减少12.1吨的碳排放量。建议的太阳能辅助的VI-ASHP有可能实现加热和冷却需求,同时减少了中国北方的碳排放。

著录项

  • 来源
    《Applied Energy》 |2020年第1期|115323.1-115323.17|共17页
  • 作者单位

    Univ Hull Res Ctr Sustainable Energy Technol Kingston Upon Hull HU6 7RX N Humberside England;

    Univ Hull Res Ctr Sustainable Energy Technol Kingston Upon Hull HU6 7RX N Humberside England;

    Univ Hull Res Ctr Sustainable Energy Technol Kingston Upon Hull HU6 7RX N Humberside England;

    Univ Hull Res Ctr Sustainable Energy Technol Kingston Upon Hull HU6 7RX N Humberside England;

    Univ Hull Res Ctr Sustainable Energy Technol Kingston Upon Hull HU6 7RX N Humberside England;

    Taiyuan Univ Technol Coll Environm Sci & Engn Taiyuan 030024 Peoples R China;

    Univ Hull Res Ctr Sustainable Energy Technol Kingston Upon Hull HU6 7RX N Humberside England;

    Univ Hull Res Ctr Sustainable Energy Technol Kingston Upon Hull HU6 7RX N Humberside England;

    Univ Hull Res Ctr Sustainable Energy Technol Kingston Upon Hull HU6 7RX N Humberside England;

    Univ Hull Res Ctr Sustainable Energy Technol Kingston Upon Hull HU6 7RX N Humberside England;

    Univ Hull Res Ctr Sustainable Energy Technol Kingston Upon Hull HU6 7RX N Humberside England;

  • 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; Mini-channel collector; Vapour injection air source heat pump; Underfloor heating and cooling; Carbon emission; Payback period;

    机译:太阳能;迷你通道收集器;蒸汽注入空气源热泵;地板加热和冷却;碳排放;回收期;

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