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Sustainable framework for buildings in cold regions of China considering life cycle cost and environmental impact as well as thermal comfort

机译:中国寒冷地区建筑的可持续框架考虑生命周期成本和环境影响以及热舒适性

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In recent decades, environmental problems have enforced designers to estimate the level of environmental emission of building design and reduce their environmental impact. On the premise of ensuring indoor comfort, the cost-effectiveness of solutions for reducing the building’s greenhouse gas has become a critical issue. Based on the Life Cycle Assessment (LCA), this paper establishes a building performance trade-off framework for indoor thermal comfort, economics, and environmental implication. This framework consists of four parts: the establishment of the optimization model; sensitivity analysis; obtain of Pareto frontier solutions, and decision-making analysis. Optimization variables involve envelope type and some envelope physical parameters. The “design variables-building performances” database is obtained by using building simulation software combined with the Latin hypercube sampling algorithm. Sensitivity analysis is used to extract the key factors affecting building performance. The designer can prioritize these key factors and it can reduce the uncertainty of building performance. A multi-objective optimization method coupling Gradient Boosted Decision Tree (GBDT) and non-dominated sorting genetic (NSGA-II) algorithm is proposed to seek the trade-off between three performances (obtain Pareto frontier solutions). The Pareto solution provides a more comprehensive reference for the preferences of different stakeholders, and the set of alternative solutions is further shrunk. Finally, take a specific residential building in China’s cold climate zone as a showcase of the trade-off framework. According to the obtained Pareto frontier solution, the solution set is shrunk to a certain range, and the distribution ranges of Life Cycle Costs, the greenhouse gas emissions, and the annual thermal discomfort hour ratio are 122.3–137.1 USD/msup2/sup, 15.6–44.8?kg COsub2/sub/msup2/sup, and 19.1–25.2%, respectively. The trade-off framework adopts the order of objective Pareto optimal and then subjective preference selection, narrowing the scope of alternatives for designers and saving time-cost of decision-making.
机译:近几十年来,环境问题强制实施设计人员来估计建筑设计的环境排放水平,减少环境影响。在确保室内舒适性的前提下,减少建筑温室气体的解决方案的成本效益已成为一个关键问题。基于生命周期评估(LCA),本文建立了一个建筑绩效的贸易框架,用于室内热舒适,经济学和环境含义。该框架由四个部分组成:优化模型的建立;敏感性分析;获取帕累托前沿解决方案,以及决策分析。优化变量涉及信封类型和一些信封物理参数。通过使用建筑仿真软件与拉丁超立体采样算法相结合而获得“设计变量构建性能”数据库。灵敏度分析用于提取影响建筑物性能的关键因素。设计人员可以优先考虑这些关键因素,它可以降低建筑物性能的不确定性。提出了一种多目标优化方法耦合梯度提升决策树(GBDT)和非主导的分类遗传(NSGA-II)算法,以寻求三次表演之间的权衡(获得帕累托前沿解决方案)。 Pareto解决方案为不同利益相关者的偏好提供了更全面的参考,并且该组替代解决方案进一步缩小。最后,在中国的冷气候区乘坐特定的住宅建筑作为权衡框架的展示。根据所获得的静脉前端溶液,溶液组缩小到一定范围,生命周期成本,温室气体排放量和年热不适时间比的分布范围为122.3-137.1美元/ m 2 ,15.6-44.8?kg CO 2 / m 2 ,和19.1-25.2%。权衡框架采用客观帕累托最优的顺序,然后主观偏好选择,缩小设计人员的替代方案,并节省决策时间成本。

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