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Large eddy simulation based multi-environment PDF modelling for mixing processes of transcritical and supercritical cryogenic nitrogen jets

机译:基于大型涡模拟的多环境PDF模型,用于混合过程的跨临界和超临界低温氮气喷射的混合过程

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Turbulent cryogenic nitrogen jets at transcritical and supercritical conditions are numerically investigated by LES-based multi-environment probability density function method together with the tabulated thermodynamic properties. To account for the non-ideal thermodynamic effects, the mixture properties are calculated by using Soave-Redlich-Kwong equation of state. The effect of sub-grid scale fluctuations of thermodynamic properties is modelled by the multi-environment PDF. Numerical results indicate that the present multi-environment PDF approach has the prediction capability to capture the essential features of cryogenic nitrogen jets under the supercritical pressure. Comparing with the supercritical jet, the transcritical jet features the longer and denser core which is relatively resilient to core destruction caused by turbulence. It is also found that the stronger pseudo-boiling strength and the larger density difference are directly tied with the longer cold-core length. In terms of the sub-grid scale scalar fluctuation, the transcritical jet shows the larger magnitude than the super-critical jet. In the transcritical nitrogen jet, it is identified that the strong sub-grid fluctuations of density and isobaric specific heat are closely tied with the pseudo boiling process. These numerical results suggest that the high-fidelity numerical modelling for transcritical flows must have the capability to realistically represent the combined effects of turbulence and thermodynamic nonlinearities, sub-grid scale fluctuations, and scalar conditional statistics.
机译:通过基于LES的多环境概率密度函数方法与制表的热力学性质一起进行数值研究跨临界和超临界条件下的湍流低温氮气喷射。为了考虑非理想的热力学效应,通过使用状态的Soave-Redlich-Kwong方程来计算混合物性质。热力学性质的子网格级波动的影响由多环境PDF建模。数值结果表明,本多环境的多环境PDF方法具有预测能力,以捕获超临界压力下低温氮气喷射的基本特征。与超临界射流进行比较,跨临界射流具有较长和更密集的芯,其相对弹性由湍流引起的核心破坏。还发现较强的伪沸点强度和较大的密度差异直接与较长的冷芯长度直接捆扎。就副网格尺度标量波动而言,跨临界射流显示比超临界喷射更大的幅度。在跨临界氮气射流中,鉴定它的密度和异烟特异性热量的强子栅极波动与伪沸腾过程密切相关。这些数值结果表明,用于跨临界流量的高保真数值模型必须具有现实地代表湍流和热力学非线性,子网格级波动和标量条件统计的综合影响的能力。

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