建立多准则决策模型,帮助建筑设计师选择城市地区的表层建筑系统

IF 1.8 4区 工程技术 Q3 CONSTRUCTION & BUILDING TECHNOLOGY
Jonas Dürr, A. Geissler, C. Hoffmann
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引用次数: 2

摘要

建筑材料种类繁多,几乎无法追踪。城市建筑密集化的趋势仍在迅速发展。再加上气候变化,一种情况正在出现,在城市公共空间的生活舒适度方面带来生态和经济风险。建筑设计师需要帮助(工具),以便能够在他们的规划中解决广泛的需求。多准则决策(MCDM)模型BASK (engl)的发展。“气候变化中的城市建筑材料”)。该模型的目标是帮助建筑设计师确定墙面、地面和屋顶建筑的表面材料,并帮助确定环境、经济和建筑实践标准之间的最佳折衷。目前可用的标准是热应力、视觉反射率、二氧化碳当量、发电量、可改装性、吸声性、建筑成本和寿命。设计师可以对这些标准进行加权,从而对最符合设计师优先标准的建筑系统进行定制排名。BASK的设计基本上允许对标准进行扩展。本文描述的BASK版本包括10个施工系统,涵盖了以墙壁为重点的各种施工类型。该工具需要包括建筑系统中所考虑的材料的技术数据,这些数据可通过数据库提供。建筑系统的范围也可以在未来扩展。基于构造系统的约束集,给出了灵敏度分析和初步验证结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a Multi-Criteria Decision-Making model to assist building designers in the choice of superficial construction systems in urban areas
An enormous range of building materials that is almost impossible to keep track of is available. The trend toward building densification in cities continues apace. Coupled with climate change, a situation is emerging that poses ecological as well as economic risks in terms of living comfort in public, urban spaces. Building designers need help (tools) to be able to address a wide range of requirements within their planning. The development of the Multi-Criteria Decision-Making (MCDM) model BASK (engl. “Construction Materials for Cities in Climate Change”) is presented. The goal of the model is to assist building designers in determining surface materials for wall, ground and roof construction and help determine the best compromise between environmental, economic, and building practice criteria. Currently available criteria are heat stress, visual reflectance, CO2 equivalents, electricity production, retrofitability, sound absorption, construction costs, and life span. The criteria can be weighted by the designer, resulting in a customized ranking of construction systems that best meets the designer’s prioritized criteria. The design of BASK basically allows for an extension of the criteria. The version of BASK described in this paper includes 10 construction systems covering a wide range of construction types focused on walls. The tool requires technical data for materials considered in construction systems included, which are made available via a data base. The scope of construction systems can also be extended in the future. Based on the restricted set of construction systems the results of a sensitivity analysis and initial validation are given.
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来源期刊
Journal of Building Physics
Journal of Building Physics 工程技术-结构与建筑技术
CiteScore
5.10
自引率
15.00%
发文量
10
审稿时长
5.3 months
期刊介绍: Journal of Building Physics (J. Bldg. Phys) is an international, peer-reviewed journal that publishes a high quality research and state of the art “integrated” papers to promote scientifically thorough advancement of all the areas of non-structural performance of a building and particularly in heat, air, moisture transfer.
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