基于bim的公寓地面冷凝模拟评价输入信息系统建设

Q4 Engineering
Soung-Wook Hong, Hyung-June Ahn, H. Jung, D. Cho
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引用次数: 3

摘要

本研究旨在构建一个数据输入系统,实现建筑信息模型(BIM)自动化系统,以提高公寓建筑规划时室内表面冷凝模拟评估过程的效率。仅使用传统的计算机辅助设计(CAD)图纸进行地面凝露模拟评估可能会受到分析人员主观判断的干扰和信息缺失的问题,并且由于设计变更带来的重复评估,这一过程需要很长时间。为了改善这些问题,可以使用统一的BIM数据评估方法,这就需要一个能够使BIM数据与换热分析程序输入数据兼容的信息系统。本研究首先通过建立BIM表面冷凝模拟分析流程,提出了BIM创作工具与传热程序之间的数据兼容性方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Input information system building for BIM-Based simulation evaluation of apartment surface condensation
This study aims to construct a data input system to implement an automation system for building information modelling (BIM) in order to improve the efficiency of the simulation evaluation process of indoor surface condensation when planning apartment buildings. Surface condensation simulation evaluations using only conventional computer-aided design (CAD) drawings may be inaccurate due to the problems of interference from the analyst’s subjective judgement and missing information, and this process takes a long time due to repetitive evaluations brought about by design changes. In order to improve on these problems, a unified evaluation method using BIM data can be used, and this requires an information system which enables data compatibility between BIM data and the input data of a heat transfer analysis program. This study firstly presents a data compatibility methodology between BIM authoring tools and heat transfer programs by establishing the surface condensation simulation analysis process using BIM ...
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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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