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Numerical analysis of two experiments related to thermal fatigue

机译:与热疲劳有关的两个实验的数值分析

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Jets in cross flow are of fundamental industrial importance and play an important role in validating turbulence models. Two jet configurations related to thermal fatigue phenomena are investigated: ? T-junction of circular tubes where a heated jet discharges into a cold main flow and ? Rectangular jet marked by a scalar discharging into a main flow in a rectangular channel. The T-junction configuration is a classical test case for thermal fatigue phenomena. The Vattenfall T-junction experiment was already subject of an OECD/NEA benchmark. A LES modelling and calculation strategy is developed and validated on this data. The rectangular-jet configuration is important for basic physical understanding and modelling and has been analyzed experimentally at CEA. The experimental work was focused on turbulent mixing between a slightly heated rectangular jet which is injected perpendicularly into the cold main flow of a rectangular channel. These experiments are analyzed for the first time with LES. The overall results show a good agreement between the experimental data and the CFD calculation. Mean values of velocity and temperature are well captured by both RANS calculation and LES. The range of critical frequencies and their amplitudes, however, are only captured by LES.
机译:错流射流具有重要的工业意义,并且在验证湍流模型中起着重要作用。研究了与热疲劳现象有关的两种射流配置:圆管的T形结点,其中加热的射流排放到冷主流中,以标量为特征的矩形射流排放到矩形通道中的主流中。 T型结构型是热疲劳现象的经典测试案例。 Vattenfall T型结实验已经成为OECD / NEA基准测试的对象。针对此数据开发并验证了LES建模和计算策略。矩形射流的配置对于基本的物理理解和建模很重要,并且已经在CEA上进行了实验分析。实验工作的重点是在略微加热的矩形射流之间进行湍流混合,该射流垂直注入矩形通道的冷主流中。首次使用LES分析了这些实验。总体结果表明,实验数据与CFD计算之间具有良好的一致性。通过RANS计算和LES可以很好地捕获速度和温度的平均值。但是,临界频率的范围及其幅度仅由LES捕获。

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