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Effects of radiative forcing of building integrated photovoltaic systems in different urban climates

机译:不同城市气候下建筑一体化光伏系统的辐射强迫效应

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摘要

Recent years have witnessed a remarkable reduction in solar-panel costs, such that low-efficiency, low-cost photovoltaics (PV) currently prevail over more complex, high-efficiency technologies. Although solar-energy-generating installations provide a renewable energy source often considered emission free, a number of externalities are frequently ignored that favor technologies with a reduced efficiency as long as they are available at lower cost. Whenever PV systems are installed, the absorption properties of the surface are changed and less sunlight from the Earth's surface is reflected into space. By including this radiative forcing in the form of the Earth's surface reflection coefficient albedo (alpha), we take these externalities into consideration in the overall equivalent global warming potential (GWP) of a PV system. Three different effects need to be considered when changing the absorption properties of the Earth's surface: (1) global albedo impact, (2) regional atmospheric heat islands, and (3) locally heated surfaces. The unintended radiative forcing adversely affects the net efficiency of building-integrated solar installations in warm urban climates, as more energy is required for cooling to ensure human comfort. The total GWP of four different PV technologies was examined for three different urban climates, temperate, moderate, and warm. To minimize the system energy payback time (EPBT) it is most sensible to install high efficiency solar-energy systems outside cities and urban developments in locations with high annual irradiance. Only when taking radiative forcing into environmental and economic considerations is it expected that solar-technology development will correct its trajectory away from low-cost systems and toward high-efficiency installations with lower overall GWP. (C) 2017 The Author(s). Published by Elsevier Ltd.
机译:近年来,太阳能电池板的成本已大大降低,因此低效率,低成本的光伏(PV)当前胜过更复杂,高效的技术。尽管太阳能发电设备提供了通常被视为无排放的可再生能源,但只要能以较低的价格获得,许多外部因素通常会被忽略,这些外部因素有利于效率降低的技术。无论何时安装光伏系统,表面的吸收特性都会发生变化,并且来自地球表面的更少的阳光会反射到太空中。通过以地球表面反射系数反照率(alpha)的形式包括这种辐射强迫,我们在光伏系统的整体等效全球变暖潜能(GWP)中考虑了这些外部性。更改地球表面的吸收特性时,需要考虑三种不同的影响:(1)全球反照率影响;(2)区域性大气热岛;(3)局部加热的表面。在温暖的城市气候中,意外的辐射强迫会对建筑物集成太阳能装置的净效率产生不利影响,因为需要更多的能量来制冷以确保人体舒适。针对三种不同的城市气候(温带,中度和温暖)检查了四种不同光伏技术的总GWP。为了最大程度地减少系统能源回收时间(EPBT),最明智的做法是在城市和城市发展以外的年辐射量高的位置安装高效太阳能系统。只有将辐射强迫纳入环境和经济考虑之列,才可以预期太阳能技术的发展将纠正其轨迹,从低成本的系统转向具有较低总GWP的高效装置。 (C)2017作者。由Elsevier Ltd.发布

著录项

  • 来源
    《Solar Energy》 |2017年第5期|399-405|共7页
  • 作者单位

    IBM Res Zurich, Saumerstr 4, CH-8803 Ruschlikon, Switzerland;

    IBM Res Zurich, Saumerstr 4, CH-8803 Ruschlikon, Switzerland;

    IBM Res Zurich, Saumerstr 4, CH-8803 Ruschlikon, Switzerland;

    IBM Res Zurich, Saumerstr 4, CH-8803 Ruschlikon, Switzerland;

  • 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

    Albedo; Global warming potential; Embodied energy; Efficiency;

    机译:反照率;全球变暖潜能;嵌入的能量;效率;

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