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Simulation of air flow in the IEA Annex 20 test room—validation of a simplified model for the nozzle diffuser in isothermal test cases

机译:在IEA附件20测试室中模拟气流-在等温测试案例中验证喷嘴扩散器的简化模型

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The modeling of air supply devices has been identified from the International Energy Agency (IEA) Annex 20 project as one of the most important problems in applying computational fluid dynamics (CFD) to predict air flow pattern and air distribution in buildings, and the complicated HESCO nozzle diffuser used in the IEA Annex 20 test room has been proved to be particularly difficult to model. In a previous study, a simplified model for this diffuser was developed and validated against experimental data. It has been shown that this model can yield good prediction for the wall jet flow issued from the diffuser, but whether this model is capable of correctly predicting the global flow pattern in the whole test room was not known. In this paper, the benchmark data of the IEA Annex 20 Test Cases B2 and B3 were used to evaluate the performance of the model for the prediction of the global air flow pattern in the test room. It was demonstrated that this model can predict the air flow pattern in the whole test room for both the Test Cases B2 and B3 with reasonable accuracy. The significance of a velocity correction when comparing the numerical prediction with experimental data obtained using omni-directional anemometers was also discussed.
机译:国际能源署(IEA)附件20项目已将供气设备建模确定为应用计算流体力学(CFD)来预测建筑物中的气流模式和空气分布以及复杂的HESCO时最重要的问题之一已经证明,在IEA附件20试验室中使用的喷嘴扩散器很难建模。在先前的研究中,开发了此扩散器的简化模型,并针对实验数据进行了验证。已经表明,该模型可以很好地预测由扩散器发出的壁喷流,但是尚不清楚该模型是否能够正确预测整个测试室中的整体流型。在本文中,使用了IEA附件20测试用例B2和B3的基准数据来评估该模型的性能,以预测测试室内的整体空气流动模式。结果表明,该模型可以以合理的准确性预测测试用例B2和B3在整个测试室内的气流模式。还讨论了将数值预测与使用全方位风速仪获得的实验数据进行比较时速度校正的重要性。

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