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首页> 外文期刊>Journal of Cleaner Production >Simulation-based evolutionary optimization for energy-efficient layout plan design of high-rise residential buildings
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Simulation-based evolutionary optimization for energy-efficient layout plan design of high-rise residential buildings

机译:基于仿真的高层住宅建筑节能布局计划设计的进化优化

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Buildings consume 40% of global energy, in which residential buildings account for a significant proportion of the total energy used. Previous studies have attempted to optimize the layout plan of residential buildings for minimizing the total energy usage, mainly focusing on low-rise houses of a regular shape and having a limited number of design variables. However, layout design for high-rise residential buildings involves the complicated interaction among a large number of design variables (e.g., different types of flats with varying configurations) under practical design constraints. The number of possible solutions may increase exponentially which calls for new optimization strategies. Therefore, this study aims to develop an energy performance-based optimization approach to identify the most energy-efficient layout plan design for high-rise residential buildings. A simulation-based optimization method applying the evolutionary genetic algorithm (GA) is developed to systematically explore the best layout design for maximizing the building energy efficiency. In an illustrative example, the proposed optimization approach is applied to generate the layout plan for a 40-storey public housing in Hong Kong. The results indicate that GA attempts to maximize the use of natural-occurring energy sources (e.g., wind-driven natural ventilation and sunlight) for minimizing 30-40% of the total energy consumption associated with air-conditioning and lighting. The optimization approach provides a decision support basis for achieving substantial energy conservation in high-rise residential buildings, thereby contributing to a sustainable built environment. (C) 2019 Published by Elsevier Ltd.
机译:建筑物消耗了40%的全球能源,其中住宅建筑占所使用的总能量的大量比例。以前的研究试图优化住宅建筑的布局计划,以最大限度地减少总能量使用,主要关注正规形状的低层房屋并具有有限数量的设计变量。然而,在实际设计约束下,高层住宅建筑的布局设计涉及大量设计变量之间的复杂相互作用(例如,不同类型的平整型)。可能的解决方案的数量可能会增加,呼吁新的优化策略。因此,本研究旨在开发基于能源性能的优化方法,以确定高层住宅建筑的最节能布局计划设计。开发了一种应用进化遗传算法(GA)的基于仿真优化方法,以系统地探索最佳布局设计,以便最大化建筑能效。在说明性示例中,应用了所提出的优化方法,以在香港的40层公共房屋中产生布局计划。结果表明,GA试图最大限度地利用自然发生的能源(例如,风力驱动的自然通风和阳光),以最小化与空调和照明相关的总能耗的30-40%。优化方法为实现高层住宅建筑的大量节能提供了决策支持基础,从而有助于可持续的建筑环境。 (c)2019年由elestvier有限公司发布

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