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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >On the velocity of ghost particles and the bias errors in Tomographic-PIV
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On the velocity of ghost particles and the bias errors in Tomographic-PIV

机译:层析-PIV中重影粒子的速度和偏差

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摘要

The paper discusses bias errors introduced in Tomographic-PIV velocity measurements by the coherent motion of ghost particles under some circumstances. It occurs when a ghost particle is formed from the same set of actual particles in both reconstructed volumes used in the cross-correlation analysis. The displacement of the resulting ghost particle pair is approximately the average displacement of the set of associated actual particles. The effect is further quantified in a theoretical analysis and in numerical simulations and illustrated in an actual experiment. It is shown that the bias error does not significantly affect the measured flow topology as deduced in an evaluation of the local velocity gradients. Instead, it leads to a systematic underestimation of the measured particle displacement gradient magnitude. This phenomenon is alleviated when the difference between particles displacement along the volume depth is increased beyond a particle image diameter, or when the reconstruction quality is increased or when the accuracy of the tomographic reconstruction is improved. Furthermore, guidelines to detect and avoid such bias errors are proposed.
机译:本文讨论了在某些情况下由幻影颗粒的相干运动在断层成像-PIV速度测量中引入的偏差误差。当幻影粒子由互相关分析中使用的两个重建体积中的同一组实际粒子组成时,就会发生这种情况。生成的重影粒子对的位移大约是一组关联的实际粒子的平均位移。在理论分析和数值模拟中进一步量化了影响,并在实际实验中进行了说明。结果表明,如对局部速度梯度的评估所推导的,偏置误差不会显着影响所测量的流量拓扑。相反,它导致对测得的颗粒位移梯度幅度的系统性低估。当沿着体积深度的粒子位移之间的差异增加到超过粒子图像直径时,或者当重建质量增加时,或者当断层摄影重建的精度提高时,这种现象得到缓解。此外,提出了用于检测和避免这种偏差误差的指南。

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