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Development of a new methodology to optimize building life cycle cost, environmental impacts, and occupant satisfaction

机译:开发新方法以优化建筑生命周期成本,环境影响和居住者满意度

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Thermal comfort and occupant thermal satisfaction are critical aspects in the indoor environment quality assessment and have received considerable attention by designers and building occupants. Improper indoor temperature not only decreases the level of occupant thermal satisfaction, but also has serious health related consequences. Despite the importance of occupant thermal satisfaction that has been vastly emphasized, studies incorporating occupants' satisfaction during the design process are very limited. Therefore, this study aims to develop a multi-objective design optimization model to minimize life cycle cost and life cycle emission, and maximize occupant satisfaction level in a typical commercial building. To solve the multi-objective optimization problem, a Harmony Search based algorithm is developed and employed. Moreover, to identify the level of design thermal satisfaction, a novel utility theory based thermal comfort index is defined and calculated. A small office building is selected as a case study to analyze four different designs which are identified as optimum solutions. To determine the optimum designs, the satisfaction level of all the design combinations having cost and emissions similar to previously distinguished optimum solutions are compared and best designs are identified. (C) 2017 Elsevier Ltd. All rights reserved.
机译:热舒适性和乘员的热满意度是室内环境质量评估的关键方面,受到了设计师和建筑居住者的极大关注。室内温度不当不仅会降低乘员的热满意度,还会对健康造成严重后果。尽管已经广泛强调了乘员的热满意度的重要性,但是在设计过程中纳入乘员满意度的研究非常有限。因此,本研究旨在建立一个多目标设计优化模型,以最小化生命周期成本和生命周期排放,并最大化典型商业建筑中的居住者满意度。为了解决多目标优化问题,开发并采用了基于和谐搜索的算法。此外,为了确定设计热满意度的水平,定义并计算了一种基于效用理论的新型热舒适指数。选择一间小型办公楼作为案例研究,以分析被确定为最佳解决方案的四种不同设计。为了确定最佳设计,比较成本和排放量与先前独特的最佳解决方案相似的所有设计组合的满意度,并确定最佳设计。 (C)2017 Elsevier Ltd.保留所有权利。

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