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Numerical simulation of turbulent airflow in a ventilated room: Inlet turbulence parameters and solution multiplicity

机译:通风室内湍流的数值模拟:入口湍流参数和解的多重性

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In this study, airflow and temperature distributions in the well-known International Energy Agency (IEA) Annex 20 room are predicted numerically to investigate the effects of the inlet turbulence intensity and the length scale on the flow characteristics, while considering the possibility of solution multiplicity related to chaos theory. The flow is considered to be turbulent, steady, incompressible, and two-dimensional. Computations are performed using the standard k-epsilon, RNG k-epsilon, standard k-omega, and shear stress transport k-omega turbulence models with scalable and automatic wall functions, and the results are compared with numerical and experimental results from the literature. The validated turbulence model is then used to investigate the effects of the turbulence intensity and the length scale. At a low inlet turbulence intensity value (Tu = 0.01), the length scale variation has no influence on the flow pattern. However, the length scale affects the flow pattern at a high inlet turbulence intensity value (Tu = 0.4). At constant low and medium length scale values, an increase in the inlet turbulence intensity from 0.01 to 0.4 affects the flow pattern. However, an increase in the turbulence intensity has no influence on the flow pattern at a constant high length scale value. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项研究中,对国际著名能源机构(IEA)附件20房间的气流和温度分布进行了数值预测,以研究入口湍流强度和长度尺度对流动特性的影响,同时考虑了溶液多样性的可能性。与混沌理论有关。该流动被认为是湍流的,稳定的,不可压缩的并且是二维的。使用具有可扩展和自动壁函数的标准k-ε,RNGk-ε,标准k-ω和剪切应力传递k-ω湍流模型进行计算,并将结果与​​文献中的数值和实验结果进行比较。然后,使用经过验证的湍流模型来研究湍流强度和长度尺度的影响。在较低的入口湍流强度值(Tu = 0.01)下,长度比例变化对流型没有影响。但是,长度比例会在高入口湍流强度值(Tu = 0.4)下影响流型。在恒定的低和中长度标度值下,入口湍流强度从0.01增加到0.4会影响流型。但是,湍流强度的增加在恒定的高比例尺值下对流型没有影响。 (C)2015 Elsevier B.V.保留所有权利。

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