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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Experimental study of gas-solid flow characteristics and flow-vibration coupling in a full loaded inclined pipe
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Experimental study of gas-solid flow characteristics and flow-vibration coupling in a full loaded inclined pipe

机译:全负载倾斜管中气固流动特性和流动振动耦合的实验研究

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摘要

The inclined pipe is widely used as a downward particle-conveying structure. Bubbles accompanying with the descending particles always induce complex flow pattern and pipe vibration, which would shorten the service life of equipment. In this paper, the gas-solid interaction and fluid-vibration coupling were experimentally studied by analyzing dynamic pressure and displacement of an inclined pipe. The results showed that, with increased mass flow rate, there was a progressive gas-solid flow behavior in the inclined pipe due to the water-pouring phenomenon. With the generation and upward channeling flow of bubbles, the downward particle flow showed an unstable motion, causing pressure fluctuations and severe vibration of the pipe system. Downward behavior of particles in the inclined pipe were eventually divided into three flow patterns: (1) creeping stratified flow, (2) gas channeling flow, and (3) dense phase fluidization flow. This work can provide theoretical basis for the design and operation of inclined pipe.
机译:斜管作为向下的颗粒输送结构被广泛使用。伴随颗粒下降的气泡往往会引起复杂的流型和管道振动,从而缩短设备的使用寿命。本文通过对斜管动态压力和位移的分析,对气固耦合和流体振动耦合进行了实验研究。结果表明,随着质量流量的增加,倾斜管内由于水的倾泻现象,出现了渐进的气固流动行为。随着气泡的产生和向上窜流,向下的颗粒流表现出不稳定的运动,导致压力波动和管道系统的剧烈振动。颗粒在斜管中的向下行为最终被分为三种流动模式:(1)蠕动分层流,(2)气窜流和(3)密相流化流。这项工作可为斜管的设计和运行提供理论依据。

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