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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 >On the kinematics of horizontal slug flow pneumatic conveying and the relationship between slug length, porosity, velocities and stationary layers
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On the kinematics of horizontal slug flow pneumatic conveying and the relationship between slug length, porosity, velocities and stationary layers

机译:在水平块流动气动输送的运动学上,散布长度,孔隙,速度和固定层的关系

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This paper focusses specifically on the topic of slug velocity and the definitions and origins of the various velocities observed within horizontal slug flow pneumatic conveying. Testing was conducted and measurement of slug particle velocity and wave front and rear velocities confirmed existing observations in the literature that the slug wave travels faster than the individual particles. Examining the relationships between the measured velocities further, a model based on the conservation of mass in a slug provided a relationship between slug velocity terms, length, porosity and the stationary layers. For constant slug length conditions the new model was shown to be equivalent to the gas-liquid analogy model of Konrad [1]. The propagation velocity in the analogy of Konrad was shown to be the relative velocity term, which reflects the perceived change in velocity from the dynamic changes in slug length occurring due to the particle exchanges between the slug and stationary layers. Further-more, the porosity gradient between the slug and stationary layers was shown to impact both the velocity and layer fraction. The validation of the model showed very good agreement to the measurements and demonstrated that the slug particle and wave velocities should not be used interchangeably as is often done in the literature. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文专注于散布速度的主题以及在水平块流动气动输送中观察到的各种速度的定义和起源。进行测试并测量块颗粒速度和波前速度和后速度,在文献中证实了封端波更快地传播的文献中的观察结果。进一步检查测量速度之间的关系,基于块中质量守恒的模型提供了块速度术语,长度,孔隙率和固定层之间的关系。对于恒定的散布长度,新模型被证明是相当于Konrad的气液类比模型[1]。 konrad类比中的传播速度被示出为相对速度术语,其反映由于块和固定层之间的粒子交换引起的块长度的动态变化的感知变化。此外,示出了块和固定层之间的孔隙率梯度,以施加速度和层馏分。该模型的验证表明对测量非常好的一致性,并证明了块颗粒和波速度不应互换地使用,因为通常在文献中进行。 (c)2019年Elsevier B.V.保留所有权利。

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