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Evaluation of Strategies to Improve the Thermal Performance of Steel Frames in Curtain Wall Systems

机译:改善幕墙系统钢框架热性能的策略评估

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Recently, metal curtain wall systems have been widely used in high-rise buildings due to many advantages, including being lightweight, rapid construction, and aesthetic features. Since the metal frame may lead to lower energy performance, thermal discomfort, and condensation risk due to the high thermal conductivity, its thermal performance can be important for the improvement of the overall thermal performance of the curtain wall system, as well as the energy efficiency of the building envelope. This study aims to evaluate variety of design strategies to improve the thermal performance of steel curtain wall frames. Five base cases and three further steps were selected for two different head profile shapes based on a state-of-the art technology review, and their thermal transmittances were calculated through simulations according to the ISO 12631 standard which is an international standard for calculating thermal transmittance of curtain wall system. Measured results that were obtained from hot-box tests were compared with the calculated results to validate the simulation method of this study. The shape of the head profile did not strongly influence the overall thermal transmittance, and the choice of strategies for the rabbet space was more important. More effective strategies could be decided according to the steps for variation development. This result can serve as a guideline for the design of high-performance curtain wall frames.
机译:近来,金属幕墙系统由于具有许多优点而被广泛地用于高层建筑中,这些优点包括轻巧,快速的构造和美学特征。由于金属框架由于高导热性而可能导致较低的能量性能,热不适感和凝结风险,因此其金属热性能对于改善幕墙系统的整体热性能以及提高能源效率至关重要建筑围护结构。这项研究旨在评估各种设计策略,以改善钢幕墙框架的热性能。根据最新技术审查,为两个不同的头部轮廓形状选择了五个基本情况和三个进一步的步骤,并根据ISO 12631标准(该国际标准是计算导热率的国际标准)通过模拟计算得出了它们的导热率幕墙系统。从热箱测试获得的测量结果与计算结果进行比较,以验证本研究的仿真方法。头部轮廓的形状并没有强烈影响整体的热传输率,而对刀槽空间的策略选择更为重要。可以根据变体开发步骤确定更有效的策略。该结果可作为高性能幕墙框架设计的指导。

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