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    Please use this identifier to cite or link to this item: https://tkuir.lib.tku.edu.tw/dspace/handle/987654321/44469


    Title: Finite element technique to solve the elastic strain for Leonov fluid flow
    Authors: 林國賡;Lin, Gwo-geng;Tseng, Hsieng-cheng;Ju, Yi-shi
    Contributors: 淡江大學化學工程與材料工程學系
    Keywords: Viscoelastic flow;Leonov model;Convective integration;Finite element method
    Date: 1989-09
    Issue Date: 2010-03-09 10:24:05 (UTC+8)
    Publisher: Chicheste: John Wiley & Sons Ltd.
    Abstract: The finite element method is used to find the elastic strain (and thus the stress) for given velocity fields of the Leonov model fluid. With a simple linearization technique and the Galerkin formulation, the quasi-linear coupled first-order hyperbolic differential equations together with a non-linear equality constraint are solved over the entire domain based on a weighted residual scheme. The proposed numerical scheme has yielded efficient and accurate convective integrations for both the planar channel and the diverging radial flows for the Leonov model fluid. Only the strain in the inflow plane is required to be prescribed as the boundary conditions. In application, it can be conveniently incorporated in an existing finite element algorithm to simulate the Leonov viscoelastic fluid flow with more complex geometry in which the velocity field is not known a priori and an iterative procedure is needed.
    Relation: International journal for numerical methods in fluids 9(9), pp.1059-1072
    DOI: 10.1002/fld.1650090902
    Appears in Collections:[Graduate Institute & Department of Chemical and Materials Engineering] Journal Article

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