首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >LDV measurements and analysis of gas and particulate phase velocity profiles in a vertical jet plume in a 2D bubbling fluidized bed Part I: A two-phase LDV measurement technique
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LDV measurements and analysis of gas and particulate phase velocity profiles in a vertical jet plume in a 2D bubbling fluidized bed Part I: A two-phase LDV measurement technique

机译:LDV测量和二维鼓泡流化床中垂直射流羽流中气相和颗粒相速度分布的分析第一部分:两相LDV测量技术

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摘要

A laser Doppler Velocimetry (LDV) technique has been developed to simultaneously measure the gas and particulate phase velocities in a high-speed jet plume in a 2D bubbling fluidized bed. The laser, optics, and signal processing filters were configured to eliminate problematic laser-beam intensity fluctuations, which can contaminate Doppler signals in optically dense flows. In order to avoid damaging the optical access windows, the high-speed gas jet was seeded with small ice crystals. LDV bursts from the bed particles and gas tracer ice crystals were simultaneously recorded. The Doppler signals from the tracer crystals and bed particles were differentiated based on their burst intensity and coincidence to yield the particulate and gas phase velocities at a given location within the jet plume. Example gas and particulate phase velocity profiles and the associated measurement uncertainties are presented.
机译:激光多普勒测速(LDV)技术已经开发出来,可以同时测量2D鼓泡流化床中高速喷射羽流中的气相和颗粒相速度。激光器,光学器件和信号处理滤波器的配置可消除有问题的激光束强度波动,该波动会污染光学密集流中的多普勒信号。为了避免损坏光学通道窗口,高速气体射流被注入了小的冰晶。同时记录了来自床颗粒和气体示踪剂冰晶的LDV爆发。来自示踪剂晶体和床层颗粒的多普勒信号根据其爆发强度和巧合来区分,从而在喷射羽流内的给定位置产生颗粒和气相速度。给出了示例气相和颗粒相速度曲线以及相关的测量不确定度。

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