首页> 外文会议>2002 ACEEE Summer Study on Energy Efficiency in Buildings Aug 18-23, 2002 Pacific Grove, California >Active Load Management with Advanced Window Wall Systems: Research and Industry Perspectives
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Active Load Management with Advanced Window Wall Systems: Research and Industry Perspectives

机译:具有高级窗墙系统的主动负载管理:研究和行业前景

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Advanced window wall systems have the potential to provide demand response by reducing peak electric loads by 20-30% in many commercial buildings through the active control of motorized shading systems, switchable window coatings, operable windows, and ventilated double-skin facade systems. These window strategies involve balancing daylighting and solar heat gains, heat rejection through ventilation, and night-time natural ventilation to achieve space-conditioning and lighting energy use reductions without the negative impacts on occupants associated with other demand responsive (DR) strategies. This paper explores conceptually how advanced window systems fit into the context of active load management programs, which cause customers to directly experience the time-varying costs of their consumption decisions. Technological options are suggested. We present pragmatic criteria that building owners use to determine whether to deploy such strategies. A utility's perspective is given. Industry also provides their perspectives on where the technology is today and what needs to happen to implement such strategies more broadly in the US. While there is significant potential for these advanced window concepts, widespread deployment is unlikely to occur with business-as-usual practice. Technologically, integrated window-lighting-HVAC products are underdeveloped. Implementation is hindered by fragmented labor practices, non-standard communication protocols, and lack of technical expertise. Design tools and information products that quantify energy performance, occupant impacts, reliability, and other pragmatic concerns are not available. Interest within the building industry in sustainability, energy-efficiency, and increased occupant amenity, comfort, and productivity will be the driving factors for these advanced facades in the near term - at least until the dust settles on the deregulated electricity market.
机译:通过主动控制电动遮阳系统,可切换的窗户涂料,可操作的窗户以及通风的双层外墙系统,先进的窗户墙系统有潜力通过在许多商业建筑中将峰值电力负荷降低20-30%来提供需求响应。这些窗口策略涉及平衡采光和太阳能热量获取,通过通风排热以及夜间自然通风以实现空间调节和照明能耗的减少,而不会给其他需求响应(DR)策略带来负面影响。本文从概念上探讨了高级窗口系统如何适应主动负载管理程序的环境,从而使客户直接体验其消费决策的时变成本。建议使用技术选择。我们提出了实用的标准,建筑物所有者可使用这些标准来确定是否部署此类策略。给出了实用程序的观点。工业界还就当今技术的位置以及在美国更广泛地实施这种策略需要发生什么提出自己的看法。尽管这些高级窗口概念具有巨大的潜力,但按常规做法不太可能进行广泛部署。从技术上讲,集成式采光HVAC产品尚不成熟。零散的劳动惯例,非标准的通信协议以及缺乏技术专长阻碍了实施。没有量化能源性能,乘员影响,可靠性和其他实际问题的设计工具和信息产品。建筑行业对可持续性,能源效率以及增加的居住舒适性,舒适性和生产率的兴趣将成为这些高级立面的近期驱动因素-至少在尘埃落定于放松管制的电力市场之前。

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