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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Experimental adventures in variable-density mixing

机译:APS-流体动力学APS部门第70届年会-活动-变密度混合实验

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Variable-density flows present challenges for experimental measurements and turbulence modeling. I will review the experiments that we have been performing at Los Alamos over the past decade to better understand the effects of initial conditions on subsonic and shock-driven variable-density flows in a wide range of flow conditions, including density ratios of 4:1 and Atwood numbers of 0.6. Shock tube experiments allow us to explore the effects of Mach number and initial conditions on unsteady variable-density mixing, and wind tunnel experiments using jets allow us to make detailed measurements that are still difficult in shock tubes. Explosively-driven experiments put us into regimes of high Mach number (Mach 9) and Atwood numbers close to one in gases, but they present new measurement challenges. Diagnostic developments are allowing us to measure Favre-averaged turbulence quantities for the first time in flows in shock tubes, providing important new information on turbulence modification due to density gradients and fluctuations. The success of experiments and model improvements depends on strong collaborations among modeling, experiment, and simulation, and I will talk about my positive collaboration experiences, with challenges and advice for future generations of researchers.
机译:可变密度流为实验测量和湍流建模提出了挑战。我将回顾过去十年来我们在洛斯阿拉莫斯进行的实验,以更好地了解初始条件对亚音速和冲击驱动的可变密度流动在各种流动条件下的影响,包括4:1的密度比和Atwood数为0.6。冲击管实验使我们能够探索马赫数和初始条件对不稳定的可变密度混合的影响,而使用射流的风洞实验使我们能够进行在冲击管中仍然难以进行的详细测量。爆炸驱动的实验使我们进入了气体中高马赫数(9马赫)和阿特伍德数接近于1的状态,但是它们提出了新的测量挑战。诊断技术的发展使我们能够首次测量冲击管中流动的Favre平均湍流量,从而提供有关密度梯度和波动引起的湍流修正的重要新信息。实验和模型改进的成功取决于建模,实验和仿真之间的强有力协作,我将谈论我的积极协作经验,以及对后代研究人员的挑战和建议。

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