改善墙壁与停机坪悬挂板热工性能的隔热策略比较分析

Q1 Engineering Energy and Built Environment Pub Date : 2023-10-21 DOI:10.1016/j.enbenv.2023.10.003
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引用次数: 0

摘要

这篇文章重点讨论了与停机坪混凝土悬挂板和墙基界面相关的热桥问题。研究旨在确定悬挂板顶部和底部保温层的最佳长度和厚度,以尽量减少热损失。研究了木框架和钢螺栓结构的墙体与停车场悬挂板的热性能。提出并评估了各种隔热配置,包括不同长度和厚度的挤塑聚苯乙烯泡沫(XPS)和玻璃纤维喷涂隔热材料。热性能计算采用稳态传热分析方法。模拟使用了基于有限元的软件。这项研究为分析建筑围护结构细节的热性能提供了详细的方法,同时考虑到了不同的隔热配置。模拟结果显示为热阻值(R 值)和线性热阻值(PSI 值),可用于比较不同隔热配置的热效率。结果表明,采用最佳隔热配置可使组件的热效率提高 80%。这些研究结果可作为指南,旨在帮助建筑设计师提高混凝土悬挂板的热性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Comparative analysis of insulation strategies for improving thermal performance of wall to parkade suspended slab

This article focuses on the thermal bridging issues associated with interface of parkade concrete suspended slab to base of wall. The study aims to determine the optimal length and thickness of insulation at the top and underside of the suspended slab to minimize heat loss. The thermal performance of wall to parkade suspended slab is investigated, for both wood frame and steel stud constructions. Various insulation configurations are proposed and evaluated, including different lengths and thicknesses of extruded polystyrene foam (XPS) and Fiberglass spray insulations. The thermal performance calculations are conducted using steady-state heat transfer analysis. A finite-element based software is utilized for the simulations. The study provides a detailed methodology for analyzing the thermal performance of building envelope details, considering different insulation configurations. The results of the simulations are presented as Thermal Resistance Values (R-Values) and Linear Thermal Resistance Values (PSI-Values), allowing for a comparison of the thermal efficiency of different insulation configurations. The results show that utilizing the optimal insulation configuration can lead to up to 80 % enhancement in the thermal efficiency of the assembly. The findings serve as a guideline and aim to assist building designers in improving the thermal performance of concrete suspended slabs.

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来源期刊
Energy and Built Environment
Energy and Built Environment Engineering-Building and Construction
CiteScore
15.90
自引率
0.00%
发文量
104
审稿时长
49 days
期刊最新文献
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