首页> 外文期刊>ASHRAE Transactions >Mechanically Ventilated Double Skin Facade with Semi-Transparent Photovoltaics, Implementing Electrical Storage and Heat Pumps to Reduce Peak Demand
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Mechanically Ventilated Double Skin Facade with Semi-Transparent Photovoltaics, Implementing Electrical Storage and Heat Pumps to Reduce Peak Demand

机译:机械通风双皮肤立面,采用半透明光伏,实施蓄电池和热泵,以降低峰值需求

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摘要

Semi-Transparent Photovoltaics (STPV) can be integrated on Double Skin Facades (DSF) to enhance the electrical and thermal performance of a building. In a mechanically ventilated DSF, the heat extracted from the DSF can be used to increase the Coefficient of Performance (COP) of a heat pump based mechanical system, or it can be introduced directly to the building. In addition, the STPV integrated on the outermost layer of the DSF, can control the solar gains, may allow controlled levels of the daylight into the zone and creates a microclimate around the building. In the present study we investigate the mismatch between the electricity production by the STPV and the electricity needed for heating and lighting by the adjacent building zones and develop ways of reducing this mismatch. A DSF-STPV combination, coupled with battery storage within the building, is considered in order to shift the peak demand of the building and provide better matching oj generation and loads. Because STPV is integrated in the DSF, the heating demand during the day decreases as the building receives solar heat gains and at the same time produces electricity. This electricity produced by the STPV can be stored in a battery and later be used at the grid peak hours to reduce the peak demand by operating the heat pump. The preheated air, that is flowing within the cavity of the DSF-STPV, assists an air sourced heat pump to increase its COP and the heat produced is used to keep the building warm during the grid peak hours when the set point is reduced. With the use of such a predictive heating strategy, the peak demand of the building can coincide with the peak of the solar electricity production resulting in more than 80% reduction in the electricity consumption during the peak demand hours of the grid.
机译:半透明光伏(STPV)可以集成在双层皮肤外墙(DSF)上,以增强建筑物的电气和热性能。在机械通气的DSF中,从DSF提取的热量可用于增加基于热泵的机械系统的性能系数(COP),或者可以直接引入建筑物。此外,集成在DSF的最外层上的STPV可以控制太阳能收益,可以允许日光的受控水平进入区域并在建筑物周围产生微气候。在本研究中,我们研究了STPV的电力生产与由相邻的建筑区加热和照明所需的电力之间的不匹配,并开发减少这种不匹配的方式。考虑使用建筑物内的电池存储器的DSF-STPV组合,以便改变建筑物的峰值需求,并提供更好的匹配OJ生成和负载。由于STPV集成在DSF中,因此当天在建筑物接收到太阳能收益时,白天的加热需求减少,同时产生电力。通过STPV产生的该电力可以存储在电池中,后来使用在网格峰值小时,通过操作热泵来降低峰值需求。在DSF-STPV的腔内流动的预热空气有助于空气源热泵增加其COP,并且所产生的热量用于将建筑物保持在网格峰值小时内,当设定点降低时。利用这种预测的加热策略的使用,建筑物的峰值需求与太阳能电力生产的峰值相吻合,导致电网的峰值需求时间在电网的电力消耗中减少超过80%。

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  • 来源
    《ASHRAE Transactions》 |2020年第2期|149-156|共8页
  • 作者单位

    Department of Building Civil and Environmental Engineering Concordia University Montreal Canada;

    Concordia University Montreal Canada;

    Concordia University Montreal Canada;

    Department of Industrial Engineering University of Naples Federico Ⅱ Naples Italy;

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  • 正文语种 eng
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