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Scale-free scalar imaging velocimetry: Towards a general technique for four-dimensional velocity field measurements in turbulent flows.

机译:无标度标量成像测速仪:迈向在湍流中进行四维速度场测量的通用技术。

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The inability to measure the three-dimensional velocity field and the nine-component velocity gradient field is one of the greatest obstacles blocking the experimental study of turbulent flows. Scalar imaging velocimetry (SIV) overcomes this obstacle by measuring all three velocity and all nine velocity gradient components in four-dimensional spatio-temporal volumes. Relying on four-dimensional turbulent scalar field measurements, this technique determines the velocity field by inverting the scalar transport equation from measured scalar field data. Previous work has shown that SIV yields accurate results if the scalar fields are fully resolved; however, this limits the technique to small volume sizes and low Reynolds number turbulent flows for which the smallest length scales can be resolved. Presented here are results on the extension of SIV to “scale-free SIV” which would eliminate these restrictions. In scale-free SIV, there is a convolution of the scalar and velocity terms in the scalar transport equation. This presents problems in solving the variational equations for the velocity field that are similar to subgrid scale modeling in large eddy simulations (LES). Several methods to address this issue are examined using synthetic scalar field data. Then results are presented for scale-free SIV applied to laser induced fluorescence data from a turbulent jet. Results indicate that if a suitably accurate subgrid scale model is developed, scale-free SIV may become an accurate measurement technique yielding accurate velocity and velocity gradient fields.
机译:无法测量三维速度场和九分量速度梯度场是阻碍湍流实验研究的最大障碍之一。标量成像测速仪(SIV)通过测量多维时空体积中的所有三个速度分量和所有九个速度梯度分量来克服此障碍。依靠四维湍流标量场测量,该技术通过将测量的标量场数据中的标量传输方程式求逆来确定速度场。先前的工作表明,如果标量场完全解析,则SIV会产生准确的结果。但是,这将技术限制在小体积和低雷诺数湍流中,可以解决最小的长度尺度。这里介绍的是将SIV扩展到“无标度SIV”的结果,这将消除这些限制。在无标度SIV中,标量输运方程中存在标量项和速度项的卷积。这就提出了求解速度场变分方程的问题,类似于大涡模拟(LES)中的子网格比例模型。使用合成标量字段数据检查了解决此问题的几种方法。然后给出了将无标度SIV应用于湍流射流的激光诱导荧光数据的结果。结果表明,如果开发了适当准确的子网格比例模型,则无比例的SIV可能会成为产生准确的速度和速度梯度场的精确测量技术。

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