Mathematical modelling of salt ion transfer in the three-dimensional desalting channel of an electrodialysis apparatus

A. Kovalenko, A. Ovsyannikova
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Abstract

A new 3D model of 1:1 salt ion transfer in the desalting channel of an electrodialysis apparatus is presented and investigated in this paper. For the first time a three-dimensional mathematical model of salt ion transfer in the desalting channel taking into account the electroconvection based on the system of Nernst – Planck, Poisson and Navier – Stokes equations with the electric force and the natural boundary conditions is proposed. To solve the boundary value problem, the finite element method is used in the cross-platform numerical analysis software COMSOL Multiphysics in combination with the method of successive approximations, when the electrochemical and hydrodynamic parts of the problem are solved one by one on the current layer. In turn, the electrochemical and hydrodynamic parts of the problem are solved by Newton’s method. As a result of numerical analysis, the fundamental regularities of salt ion transfer in a three-dimensional channel, the emergence and development of electroconvective vortices, including the discovery of new three-dimensional spiral forms of salt ions, are established for the first time. It is shown that electroconvective vortices exist in the form of clusters, within which vortex bifurcations can occur. Thus, the currently existing simplified view of the structure of electroconvective vortices is clarified and developed.
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电渗析装置三维脱盐通道中盐离子转移的数学模型
本文提出并研究了电渗析装置脱盐通道中1:1盐离子转移的三维模型。本文首次提出了考虑电对流的脱盐通道中盐离子转移的三维数学模型,该模型基于能思-普朗克、泊松和纳维-斯托克斯方程组,考虑电场力和自然边界条件。为了求解边值问题,在跨平台数值分析软件COMSOL Multiphysics中,结合逐次逼近法,在电流层上逐个求解问题的电化学部分和流体动力部分。然后,用牛顿法求解了问题的电化学和流体力学部分。通过数值分析,首次确立了盐离子在三维通道中转移的基本规律,电对流涡的产生和发展,包括盐离子新的三维螺旋形式的发现。结果表明,电对流涡旋以团簇的形式存在,团簇内可发生涡旋分岔。从而澄清和发展了现有的关于电对流涡结构的简化观点。
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0.50
自引率
0.00%
发文量
21
审稿时长
16 weeks
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