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Study of instabilities in a quasi-2D MHD duct flow with an inflectional velocity profile

机译:研究具有挠曲速度分布的准2D MHD管道中的不稳定性

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摘要

The mechanisms responsible for instabilities and a transition to turbulence in liquid metal duct flows of a fusion blanket are not understood very well, which limits predictive capabilities for heat and material transport in a blanket. In order to elucidate such mechanisms in quasi-two-dimensional (Q2D) magnetohydrodynamic flows with inflection points, an experimental and computational effort is underway to electromagnetically induce a Q2D turbulent flow through the injection of current at the Hartmann walls. In such a flow, inflectional instabilities arise at the two locations where current is supplied. In the experiments, Hartmann wall inductive velocimetry is employed as the main flow diagnostics. The electric potential field is measured using an array of small probes embedded in the wall material, and the fluctuating velocity field is reconstructed from the potential data using Ohm's law. First experimental data have been taken, which are in qualitative agreement with the pre-experimental analysis, where the flows are numerically simulated using a Q2D flow model.
机译:熔覆层的液态金属管道流动中的不稳定性和湍流过渡的机理还不是很清楚,这限制了熔覆层中热量和物质传输的预测能力。为了阐明具有拐点的准二维(Q2D)磁流体动力流中的这种机制,正在进行实验和计算工作,以通过在Hartmann壁上注入电流来电磁感应Q2D湍流。在这样的流动中,在提供电流的两个位置处出现了弯曲不稳定性。在实验中,采用Hartmann壁感应测速法作为主要的流量诊断方法。使用嵌入墙体材料中的一系列小探针测量电势场,并使用欧姆定律根据电势数据重建波动速度场。已经获得了第一批实验数据,这些数据与实验前的分析在质量上是一致的,其中使用Q2D流动模型对流动进行了数值模拟。

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