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Investigating thermal mixing and reverse flow characteristics in a T-junction using CFD methodology

机译:使用CFD方法研究T型接头中的热混合和逆流特性

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A three-dimensional (3-D) computational fluid dynamics (CFD) methodology is developed to simulate the thermal mixing and reverse flow characteristics in an in-house T-junction. Different steady-state turbulence models are adopted in the simulations and assessed against the measured data of temperature distributions at various cross-sections of the main pipe. The unsteady-state turbulence models may be suitable for resolving the amplitude and frequency of temperature oscillation in a T-junction. However, T-junctions are just one component in an entire complex piping system. The steady-state turbulence models therefore attract some interest for T-junction simulations in engineering applications. Two cases, with the flowrate combinations of 30/200 and 30/400 in the branch/main pipes, are used to validate CFD simulations with different turbulence models. The reverse flow from the branch back upstream of the T-junction intersection is more significant for the lower flowrate of the main pipe, which can be confirmed by both measured data and predicted results. Based on the temperature comparison of the measurements and the predictions, the v2f turbulence model is most suitable for capturing the flow reversal characteristics in the T-junction, while the realizable k-epsilon turbulence model reproduces the measured data more accurately for the T-junction with the higher flowrate in the main pipe and the lesser reverse flow. The present results can provide a useful reference for simulating the thermal mixing and reverse flow in a T-junction with various steady-state turbulence models. (C) 2016 Elsevier Ltd. All rights reserved.
机译:开发了一种三维(3-D)计算流体力学(CFD)方法,以模拟内部T型结中的热混合和逆流特性。在仿真中采用了不同的稳态湍流模型,并根据在主管的不同横截面的温度分布的实测数据进行了评估。非稳态湍流模型可能适用于解决T型结中温度振荡的幅度和频率。但是,T型接头只是整个复杂管道系统中的一个组件。因此,稳态湍流模型引起了工程应用中T形接头仿真的兴趣。两种情况下,支管/主管中的流量组合为30/200和30/400,用于验证使用不同湍流模型的CFD模拟。对于主管的较低流量,从T形交叉口上游分支返回的反向流量更为显着,这可以通过测量数据和预测结果得到确认。基于测量值和预测值的温度比较,v2f湍流模型最适合捕获T型结的逆流特性,而可实现的kε湍流模型可以更准确地重现T型结的测量数据主管中的流量较高,而反向流量较小。本研究结果可为利用各种稳态湍流模型模拟T型接头中的热混合和逆流提供有用的参考。 (C)2016 Elsevier Ltd.保留所有权利。

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