首页> 外文会议>ASME joint US-European Fluids Engineering Division summer meeting >HYDRODYNAMIC MODEL OF GAS-SOLIDS RISERS FLOW WITH CONTINUOUS AXIAL AND RADIAL FLOW STRUCTURE
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HYDRODYNAMIC MODEL OF GAS-SOLIDS RISERS FLOW WITH CONTINUOUS AXIAL AND RADIAL FLOW STRUCTURE

机译:连续轴流和径向流结构的气固上升流的水力模型

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The dynamic transport of gas-solids in a riser leads to highly non-uniform and complex flow distributions in both axial and radial directions. This study presents a continuous modeling approach that simultaneously computes the axial and radial non-uniform distribution of gas and solid phase transport properties in the risers. The radial non-uniform distributions of transport properties of gas and solids are approximated by the 3rd order polynomials, which have been validated by available experimental data from literatures. The radial heterogeneity is due to a combined effect of riser wall boundary, the radial transport by the collision-induced diffusion, and the turbulent convection of solids. Some important transport properties, such as core-wall boundary and back-mixing ratio, are flow-coupled and solved by the proposed model. The model predictions have been validated against some published experiment data, including the distributions of solid concentration, velocity and pressure gradient along the risers.
机译:立管中气固的动态输送会导致轴向和径向高度不均匀和复杂的流量分布。这项研究提出了一种连续的建模方法,该方法可以同时计算立管中气相和固相输运特性的轴向和径向非均匀分布。气体和固体的传输特性的径向非均匀分布可以通过三阶多项式来近似,该多项式已通过文献中的可用实验数据进行了验证。径向异质性是由于立管壁边界,碰撞引起的扩散引起的径向传输以及固体的湍流对流共同作用的结果。所提出的模型进行了流耦合并解决了一些重要的输运特性,例如芯壁边界和反混比。模型预测已针对一些已发布的实验数据进行了验证,包括沿立管的固体浓度,速度和压力梯度的分布。

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