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A generalized volumetric dispersion model for a class of two-phase separation/reaction: finite difference solutions
[摘要] This article explores a volumetric approach in formulating differential equations for a class of engineering flow problems involving component transfer within or between two phases. In contrast to conventional formulation which is based on linear velocities, this work proposed a slightly different approach based on volumetric flow-rate which is essentially constant in many industrial processes. In effect, many multi-dimensional flow problems found industrially can be simplified into multi-component or multi-phase but one-dimensional flow problems. The formulation is largely generic, covering counter-current, concurrent or batch, fixed and fluidized bed arrangement. It was also intended to use for start-up, shut-down, control and steady state simulation. Since many realistic and industrial operation are dynamic with variable velocity and porosity in relation to position, analytical solutions are rare and limited to only very simple cases. Thus we also provide a numerical solution using Crank-Nicolson finite difference scheme. This solution is inherently stable as tested against a few cases published in the literature. However, it is anticipated that, for unconfined flow or non-constant flow-rate, traditional formulation should be applied.
[发布日期]  [发布机构] School of Engineering and Resources, Walailak University, Nakhon Si Thammarat; 80161, Thailand^1;Biomass and Oil-Palm Excellence Center, Walailak University, Nakhon Si Thammarat; 80161, Thailand^2
[效力级别] 化学 [学科分类] 
[关键词] Constant flow rates;Finite difference scheme;Finite-difference solution;Industrial operations;Multidimensional flow;Steady-state simulations;Two-phase separation;Volumetric flow rate [时效性] 
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