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Indoor Thermal Comfort Improvement through the Integrated BIM-Parametric Workflow-Based Sustainable Renovation of an Exemplary Apartment in Seoul, Korea

机译:通过综合的BIM-参数工作流程的可持续装修在首尔,韩国综合公寓的综合BIM-参数舒适改进

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摘要

Apartment buildings are the most common housing typology in South Korea. The mass construction of apartment neighborhoods during a period of rapid economic growth (1970−1997) involved the minimization of material use and quality, as well as industrialized construction processes. Accordingly, apartment buildings require essential renovation after only 20 years of operation. This study focuses on the improvement of thermal comfort for the renovation of an exemplary apartment building based on an integrated Building Information Modeling (BIM) and parametric software framework. The existing apartment was reconstructed with BIM software, and the virtual model was utilized for a parametric building energy simulation to calculate the thermal comfort condition of occupants during the entire year. The thermal comfort analysis results defined the criteria for the development of an enhanced building envelope system characterized by modular panels. The parametric energy simulation was executed for the renovated apartment condition with the enhanced envelope system, and the thermal comfort improvements were quantified by comparing the results for the apartment condition before and after renovation. This study aims to provide the tools and criteria for the comfort analysis of apartment occupants, as well as propose sustainable solutions for the improvement of thermal comfort in aged buildings with similar conditions, internal distribution, and construction components.
机译:公寓楼是韩国最常见的住房类型。在快速经济增长期(1970-1997)期间的公寓街区群众建设涉及最小化材料使用和质量,以及工业化建筑工程。因此,公寓楼只需要20年的运营后必要的改造。本研究重点是基于集成建筑信息建模(BIM)和参数软件框架来改善用于改进示例性公寓楼的热舒适性。使用BIM软件重建现有的公寓,虚拟模型用于参数化建筑能量模拟,以计算全年乘员的热舒适条件。热舒适性分析结果限定了由模块化面板为特征的增强建筑包络系统开发的标准。将参数化能量模拟与增强型包络系统进行翻新的公寓,通过比较在翻新之前和之后的公寓条件的结果来定量热舒适性。本研究旨在为公寓占用者提供舒适性分析的工具和标准,并提出可持续解决方案,以改善具有相似条件,内部分配和施工组件的老年建筑物的热舒适性。

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