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A systematic approach for energy efficient building design factors optimization

机译:一种节能建筑设计因素优化的系统方法

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We developed a systematic methodology to minimize the building heating and cooling loads using experimental design and non-sorting genetic algorithm to select optimal sets of building design factors. The analysis of experimental design provided a ranked list of important through less important factors design factors affecting the building heating and cooling loads. The factors related to window performance were found to be most significant ones. The non-sorting genetic algorithm offered piecewise linear pareto front lines where the optimum building design factor sets for minimum heating and cooling loads lie. The results of experimental design analysis were statistically verified against TRNSYS simulation results. It was found that the ratio of the efficiencies of heating and cooling systems affected the optimum passive building design, hence the active and passive parts of a building should be considered simultaneously in a coupled manner for the optimum design of net zero energy buildings. (C) 2014 Elsevier B.V. All rights reserved.
机译:我们使用实验设计和非分类遗传算法选择了最佳的建筑设计因素集,从而开发出一种系统化的方法来最小化建筑物的供暖和制冷负荷。对实验设计的分析提供了一个重要的列表,列出了影响建筑物供暖和制冷负荷的重要因素(从次要因素到次要因素)。发现与窗户性能有关的因素是最重要的因素。非分类遗传算法提供了分段线性pareto前线,其中设置了用于最小加热和冷却负荷的最佳建筑物设计因子。实验设计分析的结果已针对TRNSYS仿真结果进行了统计验证。已经发现,供热和制冷系统的效率之比会影响最佳无源建筑的设计,因此对于净零能耗建筑的最佳设计,应同时考虑建筑物的有源和无源部分。 (C)2014 Elsevier B.V.保留所有权利。

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