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A new approach for modeling of RO membranes using MD-SF-PF model and CFD technique

机译:使用MD-SF-PF模型和CFD技术建模反渗透膜的新方法

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摘要

The modified surface force-pore flow (MD-SF-PF) model is a successful and powerful model for prediction of reverse osmosis (RO) membrane separation. In the MD-SF-PF model, a suitable mass and momentum balances were made through the cylindrical micro porous of the membranes. A one-dimensional potential function in radial direction was used to attain the velocity profile. The obtained nonlinear equations were solved by orthogonal collocation method. In our model, extended MD-SF-PF (Ex-MD-SF-PF) model, the potential function of the MD-SF-PF model was developed as both radial and axial directions. Both Ex-MDSF- PF and MD-SF-PF models were solved by finite volume and finite difference methods based on a computational fluid dynamics (CFD) technique. The profiles of velocity and concentration were achieved and thereby the values of separation factors and fluxes for both models were obtained and were compared accordingly. This approach affected only at the end of pore, mainly on the concentration profile and slightly on the velocity profile.
机译:改进的表面力-孔隙流(MD-SF-PF)模型是预测反渗透(RO)膜分离的成功且强大的模型。在MD-SF-PF模型中,通过膜的圆柱形微孔形成了合适的质量和动量平衡。使用径向的一维势函数来获得速度分布。用正交搭配法求解得到的非线性方程。在我们的扩展MD-SF-PF(Ex-MD-SF-PF)模型中,MD-SF-PF模型的潜在功能同时沿径向和轴向方向发展。 Ex-MDSF-PF模型和MD-SF-PF模型均通过基于计算流体动力学(CFD)技术的有限体积和有限差分方法求解。获得了速度和浓度的分布图,从而获得了两个模型的分离因子和通量值,并进行了比较。这种方法仅影响孔的末端,主要影响浓度曲线,而对速度曲线影响较小。

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