优化建筑围护结构的自动生成:基于多目标过程模拟的进化算法

Q4 Engineering
Hwang-Jik Yi
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引用次数: 10

摘要

本文旨在研究构建气候意识建筑围护结构的无缝集成方法。重点是为建筑设计师提供一种在项目早期阶段开发设计方案的智能方法。通过使用基于本地数据分析的优化建筑围护结构,可以改善环境绩效。为了实现紧密集成,通过编码实现MATLAB与Rhino的耦合,实现实时信息交换。在建模过程中使用了EnergyPlus和ECOTECT来模拟环境性能。这个过程考虑两个成本函数:太阳辐射和能量。各自的性能检查运行在多目标规划(MOP)中。利用进化算法(EA)对MOP中的决策进行优化,最终达到帕累托效率。通过抽样实验对方法和结果进行了验证。莫斯科这座城市对减少能源使用的说法相互矛盾……
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Automated generation of optimised building envelope: simulation based multi-objective process using evolutionary algorithm
This paper seeks to investigate methodology on the seamless integration for constructing a climate-conscious building envelope. The focus is targeted to provide architectural designers with an intelligent way to develop their design alternatives in the early phase of a project. Improved environmental performance can be achieved by using an optimised building envelope based on local data analysis. For tight integration, coupling of MATLAB and Rhino was employed through coding for real-time information exchanges. EnergyPlus and ECOTECT were implemented in the modelling process to simulate environmental performance. This process considers two cost functions: solar radiation and energy. Respective performance check-up runs into Multi-Objective Programming (MOP). Decision-making in MOP is optimised by using an Evolutionary Algorithm (EA), and culminated with Pareto efficiency. A sample experiment was conducted to test the methodology and results. The city, Moscow, having a conflicting claim of energy use reduc...
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来源期刊
CiteScore
1.20
自引率
0.00%
发文量
0
期刊介绍: The International Journal of Sustainable Building Technology and Urban Development is the official publication of the Sustainable Building Research Center and serves as a resource to professionals and academics within the architecture and sustainability community. The International Journal of Sustainable Building Technology and Urban Development aims to support its academic community by disseminating studies on sustainable building technology, focusing on issues related to sustainable approaches in the construction industry to reduce waste and mass consumption, integration of advanced architectural technologies and environmentalism, sustainable building maintenance, life cycle cost (LCC), social issues, education and public policies relating to urban development and architecture .
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