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A Multi-Objective Harmony-Search Algorithm for Building Life Cycle Energy Optimization

机译:建筑生命周期能量优化的多目标和谐搜索算法

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In recent years, resource depletion and environmental pollution represent major concern for society. According to the Environmental Protection Agency (EPA), construction is considered as the third largest industry sector in terms of contributions to Green House Gas (GHG) emissions in the United States. The negative environmental impacts of construction processes have been increasing quickly in the world due to the large number of continuing construction projects. Buildings are one of the main consumers of energy and thus important contributors to the emission of greenhouse gases into the atmosphere. Buildings consume 40% of energy, 65% of electricity, and produce 30% of greenhouse gas emission. In the current study, a multi-objective optimization model using harmony-search algorithm is proposed to find the optimum design of building based on the building design parameters and climate conditions. Life cycle analysis methodology is used to assess design alternatives for both economical and environmental criteria. This model is employed to minimize the carbon dioxide equivalent (CO_2-eq) emissions and the life cycle cost (LCC) of a typical single family house. The multi-objective model proves to be efficient, and a set of optimal combinations (Pareto optimal solution) is obtained.
机译:近年来,资源枯竭和环境污染成为社会关注的焦点。根据环境保护署(EPA)的数据,就美国对温室气体(GHG)排放的贡献而言,建筑被认为是第三大工业部门。由于大量的持续建设项目,在世界范围内,建筑过程对环境的负面影响迅速增加。建筑物是能源的主要消耗者之一,因此是向大气排放温室气体的重要因素。建筑物消耗40%的能源,65%的电力,并产生30%的温室气体排放。在当前的研究中,提出了一种基于和谐搜索算法的多目标优化模型,以根据建筑物的设计参数和气候条件来寻找建筑物的最佳设计。生命周期分析方法用于评估经济和环境标准的设计替代方案。该模型用于最大程度地减少典型的单户住宅的二氧化碳当量(CO_2-eq)排放量和生命周期成本(LCC)。证明了多目标模型是有效的,并且获得了一组最优组合(帕累托最优解)。

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