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A PARAMETRIC SIMULATION STUDY ON KINETIC ENVELOPES

机译:运动包络的参数模拟研究

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摘要

This simulation study reveals the nature of kinetic envelopes in terms of heating and cooling loads, and compares kinetic models and other three referenced models. This research first selected the small office prototype model created by Pacific Northwest National Laboratory in accordance with the design and construction requirements of 90.1-2010. Second, we used jEPlus and Energy-plus to conduct parametric simulation for the small office prototype model for the selected representative cities related to the different climatic zones in the U.S. Third, we compared the heating and cooling loads. The results showed: 1) Compared to other three referenced models, kinetic technologies significantly reduced heating and cooling loads and peak demands of buildings in the representative climates. 2) Kinetic windows played a more significant role of saving energy than the other elements in the four climates, and the savings were around two times as large as the savings of the highly-insulated glazing.
机译:这项模拟研究揭示了在加热和冷却负荷方面动力学包络的性质,并比较了动力学模型和其他三个参考模型。本研究首先选择了西北太平洋国家实验室根据90.1-2010的设计和建造要求创建的小型办公室原型模型。其次,我们使用jEPlus和Energy-plus对选定的与美国不同气候区有关的代表性城市的小型办公室原型模型进行参数模拟。第三,我们比较了供暖和制冷负荷。结果表明:1)与其他三个参考模型相比,动力学技术显着降低了代表气候下建筑物的供热和制冷负荷以及建筑物的峰值需求。 2)在四种气候条件下,动态窗户在节能方面比其他元素更重要,其节省量约为高度隔热玻璃的节省量的两倍。

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