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Large-eddy simulation of nitrogen injection at trans- and supercritical conditions

机译:跨临界和超临界条件下注氮的大涡模拟

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摘要

Large-eddy simulations (LESs) of cryogenic nitrogen injection into a warm environment at supercritical pressure are performed and real-gas thermodynamics models and subgrid-scale (SGS) turbulence models are evaluated. The comparison of different SGS models - the Smagorinsky model, the Vreman model, and the adaptive local deconvolution method - shows that the representation of turbulence on the resolved scales has a notable effect on the location of jet break-up, whereas the particular modeling of unresolved scales is less important for the overall mean flow field evolution. More important are the models for the fluid's thermodynamic state. The injected fluid is either in a supercritical or in a transcritical state and undergoes a pseudo-boiling process during mixing. Such flows typically exhibit strong density gradients that delay the instability growth and can lead to a redistribution of turbulence kinetic energy from the radial to the axial flow direction. We evaluate novel volume-translation methods on the basis of the cubic Peng-Robinson equation of state in the framework of LES. At small extra computational cost, their application considerably improves the simulation results compared to the standard formulation. Furthermore, we found that the choice of inflow temperature is crucial for the reproduction of the experimental results and that heat addition within the injector can affect the mean flow field in comparison to results with an adiabatic injector. (C) 2016 AIP Publishing LLC.
机译:进行了超临界压力下向温暖环境中注入低温氮气的大涡模拟(LESs),并评估了天然气热力学模型和亚网格规模(SGS)湍流模型。 Smagorinsky模型,Vreman模型和自适应局部反褶积方法等不同SGS模型的比较表明,在解析尺度上湍流的表示对射流破裂的位置有显着影响,而对对于整体平均流场演化,未解决的尺度不那么重要。更为重要的是流体热力学状态的模型。注入的流体处于超临界状态或跨临界状态,并在混合过程中经历假沸腾过程。这样的流动通常表现出强的密度梯度,这会延迟不稳定性的增长,并可能导致湍流动能从径向流向轴向流的重新分布。我们在LES框架下,基于三次Peng-Robinson状态方程,评估了新颖的体积平移方法。与标准公式相比,以少量额外的计算成本,它们的应用大大改善了仿真结果。此外,我们发现流入温度的选择对于再现实验结果至关重要,与绝热进样器的结果相比,进样器内的热量增加会影响平均流场。 (C)2016 AIP出版有限责任公司。

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