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Regional performance targets for transparent near-infrared switching electrochromic window glazings

机译:透明近红外开关电致变色窗玻璃的区域性能指标

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摘要

With building heating and cooling accounting for nearly 14% of the national energy consumption, emerging technologies that improve building envelope performance have significant potential to reduce building energy consumption. Actual savings from these technologies will depend heavily upon their performance in diverse climate and operational conditions. In many cases, early-stage research can benefit from detailed investigation in order to develop performance thresholds and identify target markets. One example, a dynamic, highly transparent, near-infrared switching electrochromic (NEC) window glazing, is the focus of this investigation. Like conventional electrochromics, the NEC glazing can dynamically tune its optical properties with a small applied voltage. Consequently, the glazing can block or transmit solar heat to reduce cooling or heating loads, respectively. Unlike conventional electrochromics, NEC glazings remain transparent to visible light, causing no adverse effect to daylighting or building aesthetics. This study utilizes the software COMFEN to simulate a broad range of NEC performance levels, for commercial and residential buildings in 16 climate-representative reference cities. These simulations are the basis for identifying performance levels necessary to compete with existing static technologies. These results indicate that energy savings are strongly influenced by blocking-state performance. Additionally, residential applications have lower performance requirements due to their characteristic internal heat gains. Finally, the most dynamic NEC performance level is simulated in competition with high performing static alternatives. Here heating and cooling energy savings range from 5 to 11 kWh/m~2 yr for commercial and 8-15 kWh/m~2 yr for residential, in many regions on the order of 10%.
机译:随着建筑物供暖和制冷占全国能耗的近14%,改善建筑物围护结构性能的新兴技术在降低建筑物能耗方面具有巨大潜力。这些技术的实际节省将在很大程度上取决于其在不同气候和运行条件下的性能。在许多情况下,早期研究可以受益于详细的调查,以便制定性能阈值并确定目标市场。这一研究的重点是一个动态,高度透明的近红外开关电致变色(NEC)窗玻璃。像常规电致变色一样,NEC玻璃可以在较小的施加电压下动态调整其光学性能。因此,玻璃制品可以阻挡或传递太阳热以分别减少冷却或加热负荷。与常规电致变色材料不同,NEC玻璃对可见光保持透明,不会对日光或建筑美观产生不利影响。这项研究利用COMFEN软件模拟了16个具有气候代表性的参考城市中的商业和住宅建筑物的NEC性能水平。这些模拟是确定与现有静态技术竞争所必需的性能水平的基础。这些结果表明,节能效果受阻态性能的影响很大。此外,由于其内部特有的热量增加,住宅应用对性能的要求较低。最后,在与高性能静态替代品竞争中模拟了最动态的NEC性能水平。在许多地区,供热和制冷能源的节省范围为商用5-11 kWh / m〜2年,住宅8-15 kWh / m〜2年,在许多地区约为10%。

著录项

  • 来源
    《Building and Environment》 |2013年第3期|160-168|共9页
  • 作者单位

    Environmental Energy Technologies Division, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, Building 90R4000, Berkeley, CA 94720, USA,Environmental Energy Technologies Division, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, MS: 90-1121, Bldg 90 Room 1139, Berkeley, CA 94720, USA;

    Environmental Energy Technologies Division, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, Building 90R4000, Berkeley, CA 94720, USA;

    The Molecular Foundry, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, Berkeley, CA 94720, USA;

    Environmental Energy Technologies Division, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, Building 90R4000, Berkeley, CA 94720, USA;

    McCormick School of Engineering, Northwestern University, 2145 Sheridan Road, Room L494, Evanston, IL 60208, USA;

    Environmental Energy Technologies Division, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, Building 90R4000, Berkeley, CA 94720, USA;

    Environmental Energy Technologies Division, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, Building 90R4000, Berkeley, CA 94720, USA;

    The Molecular Foundry, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, Berkeley, CA 94720, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    dynamic windows; electrochromic glazings; nir-switching; performance targets; solar heat gain;

    机译:动态窗口;电致变色玻璃;零开关绩效指标;太阳热量获取;

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