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Thermal comfort and indoor air quality analysis of a low-energy cooling windcatcher

机译:低能耗风门的热舒适性和室内空气质量分析

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摘要

The aim of this work was to investigate the performance of a roof-mounted cooling windcatcher integrated with heat pipes using Computational Fluid Dynamics (CFD) and field test analysis. The windcatcher model was incorporated to a 5m x 5m x3 m test room model. The study employed the CFD code FLUENT 15 with the standard k-ɛ model to conduct the steady-state RANS simulation. The numerical model provided detailed analysis of the airflow and temperature distribution inside the test room. The CO2 concentration analysis showed that the system was capable of delivering fresh air inside the space and lowering the CO2 levels. The thermal comfort was calculated using the Predicted Mean Vote (PMV) method. The PMV values ranged between +0.48 to +0.99 and the average was +0.85 (slightly warm). Field test measurements were carried out in the Ras-Al-Khaimah (RAK), UAE during the month of September. Numerical model was validated using experimental data and good agreement was observed between both methods of analysis.
机译:这项工作的目的是使用计算流体动力学(CFD)和现场测试分析来研究与热管集成在一起的屋顶冷却风捕捞器的性能。风捕捉器模型已合并到5m x 5m x3 m的测试室模型中。该研究将CFD代码FLUENT 15与标准k-ɛ模型一起进行了稳态RANS仿真。数值模型提供了对测试室内的气流和温度分布的详细分析。 CO2浓度分析表明,该系统能够在空间内输送新鲜空气并降低CO2水平。使用预测平均投票(PMV)方法计算热舒适度。 PMV值介于+0.48至+0.99之间,平均值为+0.85(略暖)。九月份在阿联酋的Ras-Al-Khaimah(RAK)进行了现场测试。使用实验数据验证了数值模型,并且两种分析方法之间均观察到良好的一致性。

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