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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Evaluation of various CFD modelling strategies in predicting airflow and temperature in a naturally ventilated double skin facade
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Evaluation of various CFD modelling strategies in predicting airflow and temperature in a naturally ventilated double skin facade

机译:评价各种CFD建模策略,以预测自然通风的双层外墙的气流和温度

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摘要

Demands for energy savings, thermal and visual comfort and a high-tech image for new building envelopes can be met with a Double Skin Facade (DSF). These kinds of building envelopes are widely encouraged, proposed and increasingly designed by architects. Naturally ventilated DSFs seem very interesting from an energy point of view, but a good design is crucial to improve the energy savings and the proper operation of the system. Computational Fluid Dynamics (CFD) can play an important role in evaluating and improving the thermal behaviour of a DSF. This paper shows, through a sensitivity analysis, a good strategy for carrying out a CFD simulation of this special building envelope. In this work the validations of the results are based on experimental data from the literature. The paper provides a discussion that highlights which factors are important in the simulation, and which increase model complexity without improving the prediction capacity. The results show that, for a DSF characterized by a prevalent bidirectional flow, the additional effort required to make a 3D model is not justified by a significant improvement of the results. This work shows also that the accuracy can be improved by modelling outdoor ambient. The performance of k-ε and k-ω, the two most commonly used turbulent models for simulating the naturally ventilated DSF is evaluated.
机译:双层外墙(DSF)可以满足节能,隔热和视觉舒适以及新建筑外墙的高科技形象的需求。这类建筑围护结构受到建筑师的广泛鼓励,提议和越来越多的设计。从能源的角度来看,自然通风的DSF似乎非常有趣,但是良好的设计对于提高能源节约和系统的正常运行至关重要。计算流体动力学(CFD)在评估和改善DSF的热性能方面可以发挥重要作用。本文通过敏感性分析显示了对这种特殊建筑围护结构进行CFD模拟的好策略。在这项工作中,对结果的验证是基于文献中的实验数据。本文提供了一个讨论,强调了哪些因素在仿真中很重要,哪些因素在不提高预测能力的情况下增加了模型的复杂性。结果表明,对于以普遍的双向流动为特征的DSF,结果的显着改善并不能证明制作3D模型所需的额外工作。这项工作还表明,可以通过对室外环境建模来提高精度。评估了用于模拟自然通风DSF的两种最常用的湍流模型k-ε和k-ω的性能。

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