首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Dispersion in particle velocity resulting from random motion through a spatially-varying fluid velocity field in a pipe
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Dispersion in particle velocity resulting from random motion through a spatially-varying fluid velocity field in a pipe

机译:通过管道中空间变化的流体速度场的随机运动导致的粒子速度分散

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A macro-scale probabilistic model of dilute phase pneumatic transport is developed to analyse the dispersion in the velocity of conveyed particles and to predict their velocity statistics. Fluid drag force, proportional to the relative velocity between the particle and fluid, is taken to be the agent that causes particle motion in the axial direction. The basic premise of the approach is that dispersion in axial particle velocity is a result of subsidiary random motion in the radial direction through the fluid velocity field. Two causes are investigated for this radial motion; gravity and inter-particle collisions. As the local fluid velocity experienced by a particle thus continuously varies in an unpredictable fashion, then the associated drag force fluctuates as does the resulting particle velocity. The non-deterministic nature of the fluid velocity acting on the particle is captured by treating fluid velocity as a stochastic process whose description comes from combining knowledge of the flow field with the nature of the radial motion of the particle. This novel approach allows analytical expressions to be obtained for the mean and variance of particle velocity. The accuracy of these predictions was checked by numerical simulation and found to be good. The analysis demonstrates that dispersion in particle velocity is a function of the magnitude of dispersion in fluid velocity (a fluid property), on the inertial rate constant of the particle (a combined particle/fluid property) and the autoregressive parameter (a property reflecting the type of radial motion).
机译:建立了稀疏气力输送的宏观概率模型,以分析所输送颗粒速度的离散度并预测其速度统计数据。与颗粒和流体之间的相对速度成比例的流体阻力被认为是引起颗粒沿轴向运动的媒介。该方法的基本前提是,轴向粒子速度的分散是通过流体速度场在径向方向上的辅助随机运动的结果。研究了这种径向运动的两个原因。重力和粒子间碰撞。由于颗粒所经历的局部流体速度以不可预测的方式连续变化,因此相关的阻力随所产生的颗粒速度而波动。通过将流体速度视为随机过程来捕获作用在颗粒上的流体速度的非确定性,其描述来自将流场的知识与颗粒的径向运动的性质相结合。这种新颖的方法允许获得粒子速度的均值和方差的解析表达式。通过数值模拟检查了这些预测的准确性,发现结果良好。分析表明,粒子速度的色散是流体速度的色散大小(流体性质),粒子惯性速率常数(粒子/流体组合性质)和自回归参数(反映粒子速度的性质)的函数。径向运动的类型)。

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