在马来西亚的热带气候条件下,从双层外墙到以三层玻璃作为无涂层内层的封闭式空腔外墙

Ahmad Fadel Al Kahlout, F. Baharum, Maisha Durdana Mogna, Bushra Zalloom, Ahmer Ali
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摘要

密腔式幕墙(CCF)与它的前身双层幕墙(DSF)相比有了很大的进步,从而提高了隔热性能,减少了太阳光的穿透。CCF 的核心原理是一种密闭、不通风的建筑,它采用了自动遮阳系统、内表面三层玻璃(TGU)和外表面单层玻璃。上述技术有效地调节了太阳能和自然光对建筑物的进入。实验采用了各种 CCF-TGU 设计组合,并使用了 Window 7.8、EnergyPlus 和 DesignBuilder 等软件工具。然后,进行对比分析,将上述设计与目前使用的灰色涂层单层玻璃单元(SGU)进行比较。这项研究是通过对位于马来西亚槟榔屿的一栋公寓进行案例研究而展开的。与 SGU 相比,CCF-TGU 具有更优越的热性能,并能提高居住舒适度。在马来西亚潮湿的热带气候条件下,CCF-TGU 设计在降低运行温度比方面的效果要高于 SGU。年降低率在 29.8% 到 77.8% 之间,从而成功达到了所需的热舒适度。这项研究强调了采用创新的 CCF 技术的潜在优势,该技术经过修改,以适应马来西亚独特的气象条件。研究结果表明,采用先进的玻璃技术有可能提高建筑物内的运行温度和整体居住舒适度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
From Double Skin Facade to Closed Cavity Façade with Triple Glazed Unite as Inner Skin Without Coatings in the Tropical Climate of Malaysia
The Close Cavity Façade (CCF) has undergone significant advancements from its predecessor, the Double Skin Façade (DSF), resulting in improved thermal insulation and reduced solar penetration. The core principle behind a CCF is a hermetically sealed and non-ventilated construction that incorporates an automatic shading system, triple glazing (TGU) on the inner surface, and single glass on the outer surface. The technique described above effectively regulates the ingress of solar energy and natural light into the building. The experimentation involved the utilisation of various combinations of CCF-TGU designs, employing software tools such as Window 7.8, EnergyPlus, and DesignBuilder. Then, a comparison analysis was undertaken to compare the aforementioned designs with the presently employed single-glazed units (SGU) featuring a grey coating. The inquiry was initiated through the implementation of a case study carried out on a condominium located on Penang Island, Malaysia. The CCF-TGU has superior thermal performance and provides enhanced occupant comfort when compared to SGUs. The effectiveness of CCF-TGU designs in reducing operating temperature ratios has been observed to be higher in Malaysia's humid tropical climate than that of SGUs. The annual rate of decrease varies between 29.8% and 77.8%, thereby successfully attaining the required level of thermal comfort. The research highlights the potential advantages of implementing an innovative CCF technology that has been modified to accommodate the distinct meteorological conditions of Malaysia. The findings suggest that the implementation of advanced glazing technology holds the potential to enhance both operational temperatures and overall occupant comfort within buildings.
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