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Experimental estimation of particle flow fluctuations in dense unsteady two-phase flow using phase Doppler anemometry

机译:相位多普勒风速法估算稠密非定常两相流中颗粒流波动的实验

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摘要

A recently proposed and successfully validated post-processing algorithm is extended to treat particle data obtained by a phase Doppler anemometer (PDA) in dense, fluctuating, low-speed, two-phase flow. In such a flow, Doppler signals may be noisy and split, since particles have long residence times in the measurement volume. A novel time average based on the measured burst lengths is proposed to estimate the cross-sectional area of the measurement volume. This time average accounts for the possible split of a noisy Doppler burst, and it provides a more general description of the measurement volume than the conventional ensemble average. The extended post-processing algorithm was tested on experimental time series obtained in a circulating fluidized bed and the algorithm was compared to conventional treatment of the particle data by a commercial PDA processor. The conventional processing strongly overestimates the vertical mass flux integrated over the cross-section. In contrast, time-mean and fluctuations of mass flux, particle volume concentration, and particle velocity are reliably estimated employing the proposed algorithm, with continuity check parameters in succeeding particle data, as well as with a particle velocity filter to estimate the size of the probe volume, applying a two-component PDA in a three-dimensional flow.
机译:扩展了最近提出并成功验证的后处理算法,以处理由相位多普勒风速计(PDA)在密集,波动,低速,两相流中获得的粒子数据。在这种流动中,多普勒信号可能会嘈杂并分裂,因为颗粒在测量空间中的停留时间较长。提出了一种基于测量的突发长度的新颖的时间平均值,以估计测量体积的横截面积。该时间平均值说明了噪声多普勒猝发的可能分裂,并且它提供了比常规总体平均值更一般的测量量描述。在循环流化床中获得的实验时间序列上测试了扩展后处理算法,并将该算法与商用PDA处理器对常规的粒子数据处理进行了比较。常规处理强烈地高估了横截面上的垂直质量通量。相比之下,使用所提出的算法,通过后续粒子数据中的连续性检查参数,以及使用粒子速度滤波器来估计粒子的大小,可以可靠地估计时间平均和质量通量,粒子体积浓度和粒子速度的波动。探头体积,在三维流中应用两组分PDA。

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