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Mitigation of Peak Cooling Demand through the Combination of Residential Zoned Cooling and Window Shading: A Building Simulation Case Study

机译:通过住宅分区制冷和窗户遮阳的组合缓解高峰制冷需求:建筑模拟案例研究

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摘要

The present study expands on previous building simulation work con-cerning the potential benefits of residential zoned cooling systems during peak summer days. Such zoned systems provide an opportunity for peak reduction on hot and humid days when the electricity peak is largely caused by increased space cooling demand. In the previous study, control strategies for different occupancy profiles were consid-ered and their impact on peak and cooling energy reduction were compared. The present study builds on these results by considering the benefits of shading as a passive means of reducing the peak cooling load. The analysis is based on integrated building energy simulations of a newer-vintage house using the zoned cooling system model in con-junction with the expanded set of shading models. Total cooling ener-gy demand, peak cooling power reductions and their impact on even-ing recovery times are examined. It was found that zoned control strategies alone can yield signifi-cant peak power reductions, but the long recovery periods limit their practical application. Only with between-pane or outdoor shade con-figurations can very large reductions can be realized without compro-mising occupant comfort during the evening recovery period.
机译:本研究扩展了以前的建筑模拟工作,涉及夏季高峰期住宅分区制冷系统的潜在好处。当电力高峰主要由增加的空间制冷需求引起时,这种分区系统为在炎热和潮湿的日子降低峰值提供了机会。在先前的研究中,考虑了针对不同占用情况的控制策略,并比较了它们对峰值能耗和冷却能耗降低的影响。本研究基于这些结果,考虑了将遮阳作为降低峰值冷却负荷的被动方法的好处。该分析基于使用分区冷却系统模型和扩展的阴影模型集的较新老式房屋的集成建筑能耗模拟。研究了总的冷却能需求,最大的冷却功率降低及其对均匀恢复时间的影响。已经发现,单独的分区控制策略可以显着降低峰值功率,但是恢复周期长限制了它们的实际应用。只有在窗格间或室外遮阳配置的情况下,才能在晚上恢复期间不降低乘员舒适性的情况下实现大幅降低。

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