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Computational fluid dynamics assessment for the thermal performance of double-skin facades in office buildings under hot climatic condition

机译:炎热气候条件下办公大楼双皮肤立面热性能的计算流体动力学评估

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摘要

In general, a double-skin façade has been used to reduce energy consumption as well as to improve thermal performance in buildings as a buffer space between indoors and outdoors. The goal of this study is to undertake pre-normative research to provide information for developing a comprehensive double-skin façade system under the climatic condition in Saudi Arabia. To pursue this goal, the characteristics associated with the double-skin façade system are identified. In addition, the impact of various configurations on the thermal performance of the double-skin façades is evaluated under the weather situation in Saudi Arabia. Computational double-skin façade models are created by computational fluid dnamics simulation to assess the thermal performance of the various configurations such as cavity geometry and the use of a shading device. As a result, the variation of the opening size has a significant impact on the temperature in the cavity of the double-skin façade. For the air velocity in the cavity, the variation of the opening size and cavity depth is less sensitive. Moreover, the use of a shading device has an impact on the temperature drop in the cavity of the double-skin façade. Practical application: Generally, many studies have investigated the efficiency of double-skin façade applications due to its beneficial aspects. However, a few buildings have adopted double-skin façades to their envelopes. With a substantial growing demand for building industry in Saudi Arabia, double-skin façade applications to building design can be a solution for reducing building energy consumption. The present study investigates the thermal performance of double-skin façades under hot climates in Saudi Arabia and it can provide information for building stakeholders to develop proper double-skin façade systems.
机译:通常,双皮外立面已被用来降低能耗,并提高建筑物中的热性能作为室内和户外之间的缓冲空间。本研究的目标是进行预定研究,以便在沙特阿拉伯的气候条件下提供综合双皮立面系统的信息。为了追求这一目标,确定了与双皮立面系统相关的特性。此外,在沙特阿拉伯的天气情况下评估了各种配置对双皮立面的热性能的影响。通过计算流体DNAMICS模拟创建计算双皮外墙模型,以评估各种配置的热性能,例如腔几何形状和遮蔽装置的使用。结果,开口尺寸的变化对双皮立面的腔体中的温度产生显着影响。对于空腔中的空气速度,开口尺寸和腔深的变化较小。此外,使用遮光装置对双皮立面的腔体中的温度下降产生影响。实际应用:一般而言,许多研究已经调查了由于其有益方面的双皮外墙应用的效率。然而,一些建筑物已经采用了两种皮肤立面给他们的信封。对于沙特阿拉伯建筑业的大量需求,为建筑设计的双皮立面应用可以是降低建筑能源消耗的解决方案。本研究调查了沙特阿拉伯炎热气候下双皮肤立面的热性能,可以为建立利益相关者提供适当的双皮立面系统的信息。

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