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Discrete particle simulation of bubble and slug formation in a two-dimensional gas-fluidised bed: a hard-sphere approach.

机译:在二维气体流化床中的离散颗粒模拟或气泡和团状物形成:硬球方法。

摘要

A discrete particle model of a gas-fluidised bed has been developed and in this the two-dimensional motion of the individual, spherical particles was directly calculated from the forces acting on them, accounting for the interaction between the particles and the interstitial gas phase. Our collision model is based on conservation laws for linear and angular momentum and requires, apart from geometrical factors, two empirical parameters: a restitution coefficient and a friction coefficient. A sequence of collisions is processed using techniques which find their application in hard-sphere simulations which are commonly encountered in the field of molecular dynamics. The hydrodynamic model of the gas phase is based on the volume-averaged Navier-Stokes equations. Simulations of bubble and slug formation in a small two-dimensional bed (height 0.50 m, width 0.15 m) with 2400 particles (dp = 4 mm, material: aluminium, p = 2700 kg m¿3) showed a strong dependency of the flow behaviour with respect to the restitution and friction coefficient. A preliminary experimental validation of our model was performed using a small scale "two-dimensional" gas-fluidised bed (height 0.30 m, width 0.15 m, depth 0.015 m) with 850 ¿m ballotini glass particles (p = 2930 kg m¿3) as the bed material. Results compared fairly well with the results of a simulation which was performed with 40,000 particles using realistic values for the restitution and friction coefficients which were obtained from simple independent experiments
机译:已经开发出气态流化床的离散颗粒模型,在这种模型中,单个球形颗粒的二维运动是直接根据作用在它们上的力来计算的,其中考虑了颗粒与间隙气相之间的相互作用。我们的碰撞模型基于线性和角动量的守恒定律,除几何因素外,还需要两个经验参数:恢复系数和摩擦系数。使用在分子动力学领域中常见的硬球模拟中发现其应用的技术来处理一系列碰撞。气相的流体力学模型基于体积平均的Navier-Stokes方程。在带有2400个颗粒(dp = 4 mm,材料:铝,p = 2700 kg m?3)的小型二维床(高0.50 m,宽0.15 m)中模拟气泡和团块形成了强烈的流动依赖性关于恢复和摩擦系数的行为。我们的模型的初步实验验证是使用小尺寸“二维”气体流化床(高度0.30 m,宽度0.15 m,深度0.015 m)和850 m的Ballotini玻璃颗粒(p = 2930 kg m 3)进行的)作为床材料。结果与使用简单的独立实验获得的40,000颗粒的恢复力和摩擦系数的实际值进行的仿真结果相比,结果相当好

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