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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Pressure estimation from single-snapshot tomographic PIV in a turbulent boundary layer
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Pressure estimation from single-snapshot tomographic PIV in a turbulent boundary layer

机译:湍流边界层中单快照层析PIV的压力估计

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A method is proposed to determine the instantaneous pressure field from a single tomographic PIV velocity snapshot and is applied to a flat-plate turbulent boundary layer. The main concept behind the single-snapshot pressure evaluation method is to approximate the flow acceleration using the vorticity transport equation. The vorticity field calculated from the measured instantaneous velocity is advanced over a single integration time step using the vortex-in-cell (VIC) technique to update the vorticity field, after which the temporal derivative and material derivative of velocity are evaluated. The pressure in the measurement volume is subsequently evaluated by solving a Poisson equation. The procedure is validated considering data from a turbulent boundary layer experiment, obtained with time-resolved tomographic PIV at 10 kHz, where an independent surface pressure fluctuation measurement is made by a microphone. The cross-correlation coefficient of the surface pressure fluctuations calculated by the single-snapshot pressure method with respect to the microphone measurements is calculated and compared to that obtained using time-resolved pressure-from-PIV, which is regarded as benchmark. The single-snapshot procedure returns a cross-correlation comparable to the best result obtained by time-resolved PIV, which uses a nine-point time kernel. When the kernel of the time-resolved approach is reduced to three measurements, the single-snapshot method yields approximately 30 % higher correlation. Use of the method should be cautioned when the contributions to fluctuating pressure from outside the measurement volume are significant. The study illustrates the potential for simplifying the hardware configurations (e.g. high-speed PIV or dual PIV) required to determine instantaneous pressure from tomographic PIV.
机译:提出了一种从单个层析PIV速度快照确定瞬时压力场的方法,并将该方法应用于平板湍流边界层。单快照压力评估方法背后的主要概念是使用涡度输运方程式近似流动加速度。使用单元内涡旋(VIC)技术在单个积分时间步长上推进由测得的瞬时速度计算出的涡旋场,以更新涡旋场,然后评估速度的时间导数和材料导数。随后通过求解泊松方程评估测量空间中的压力。考虑到湍流边界层实验的数据,该程序得到了验证,该数据是使用10 kHz的时间分辨断层扫描PIV获得的,其中麦克风进行了独立的表面压力波动测量。计算通过单次快照压力法计算的表面压力波动相对于传声器测量值的互相关系数,并将其与使用基准时间为PIV的时间分辨压力所得的互相关系数进行比较。单快照过程返回的互相关可与使用九点时间内核的时间分辨PIV获得的最佳结果相当。当时间分辨方法的内核减少到三个度量值时,单快照方法的相关性大约提高30%。当来自测量体积外部的压力波动的影响很大时,应注意使用该方法。这项研究说明了简化从断层成像PIV确定瞬时压力所需的硬件配置(例如高速PIV或双PIV)的潜力。

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