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Extension of PIV for Measuring Granular Temperature Field in Dense Fluidized Beds

机译:PIV的扩展,用于测量致密流化床中的颗粒温度场

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摘要

In this work a particle image velocimetry (PIV)technique has been extended to enable the simultaneous measurement of the instantaneous velocity and granular temperature fields.The PIV algorithm has been specifically optimized for dense granular systems and has been thoroughly tested with artificially generated images.The new PIV technique has been successfully applied to a fluidized bed at incipient fluidization conditions in which a single bubble is injected by a jet and to a freely bubbling fluidized bed.The instantaneous spatial distribution of the solids-phase velocity and granular temperature that can be measured with this new technique can be used to validate CFD models for dense granular systems,such as multifluid continuum models using the KTGF (kinetic theory of granular flow)to describe the internal momentum transport in the particulate phase.
机译:在这项工作中,粒子图像测速(PIV)技术已得到扩展,可以同时测量瞬时速度和颗粒温度场.PIV算法已针对密集的颗粒系统进行了专门优化,并已通过人工生成的图像进行了全面测试。新的PIV技术已成功应用于最初流化条件下的流化床,在这种条件下,通过喷射器注入单个气泡和自由鼓泡的流化床,可以测量固相速度和颗粒温度的瞬时空间分布这项新技术可用于验证稠密颗粒系统的CFD模型,例如使用KTGF(颗粒流动动力学理论)描述颗粒相内部动量传输的多流体连续体模型。

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