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Naturally comfortable and sustainable: Informed design guidance and performance labeling for passive commercial buildings in hot climates

机译:自然舒适和可持续发展:炎热气候下被动式商业建筑的知情设计指南和性能标签

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This work develops guidance and tools to understand the performance, improve the design, and simplify the evaluation of naturally ventilated low-rise commercial buildings in warm and hot climates. We conducted 50,000 detailed energy and airflow simulations in 427 locations across Brazil, varying 55 parameters representing building morphology, fenestration, construction properties, internal gains, operating times, wind modifiers, flowpaths, window control, and soil traits. Comfort performance was quantified by the average annual fraction of occupied hours that exceeded the upper limit of an adaptive comfort zone, and investigated with sensitivity analysis and machine learning methods. Results indicated that, after climate, building size (both footprint area and number of stories) and internal gains were most influential and were positively associated with discomfort. Adding air movement with ceiling fans and providing for night ventilation both proved highly effective comfort interventions. Except for roof solar absorptance, opaque envelope changes, including increasing insulation or thermal mass, had only marginal impacts. A support vector regression metamodel, requiring 29 easily obtainable inputs plus a weather file, was fit to the simulation results and successfully validated (R-2 = 0.97). The metamodel was developed as a simplified compliance path for naturally ventilated buildings to enhance Brazil's commercial building performance labeling program, which, because it currently provides such a path only for air conditioned buildings, may discouraging decision-makers from considering even more efficient passive solutions. We use a case study to show how the metamodel, which we will distribute publicly, can also serve as a design tool, and demonstrate that modifying a small set of parameters can drastically improve thermal performance and achieve sustainable comfort in hot and warm climates. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项工作开发了一些指导和工具,以了解性能,改进设计并简化在温暖和炎热气候下自然通风的低层商业建筑的评估。我们在巴西的427个地点进行了50,000次详细的能量和气流模拟,改变了55个参数,分别代表建筑形态,开窗,建筑特性,内部收益,运行时间,风力调节剂,流路,窗户控制和土壤特性。舒适性能通过超过自适应舒适区上限的年平均占用小时数来量化,并通过敏感性分析和机器学习方法进行调查。结果表明,在气候变化之后,建筑物的大小(占地面积和楼层数)和内部收益影响最大,并且与不适感正相关。事实证明,使用吊扇增加空气流通并提供夜间通风都非常有效。除屋顶的日光吸收率外,不透明的包络线变化(包括增加的隔热或热质量)仅产生很小的影响。支持向量回归元模型需要29个易于获得的输入以及天气文件,该模型适合模拟结果并成功验证(R-2 = 0.97)。元模型的开发是为了简化自然通风建筑的法规遵从路径,以增强巴西的商业建筑性能标签计划,因为它目前仅为空调建筑提供这样的路径,因此可能使决策者不愿考虑采用更有效的被动解决方案。我们使用一个案例研究来展示我们将公开分发的元模型如何也可以用作设计工具,并证明修改少量参数可以极大地改善热性能并在炎热和温暖的气候中实现可持续的舒适性。 (C)2016 Elsevier Ltd.保留所有权利。

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