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    Finite Analytic Numerical Solution of Unsteady Laminar Flow Past Disc‐Valves

    Source: Journal of Engineering Mechanics:;1987:;Volume ( 113 ):;issue: 008
    Author:
    C. J. Chen
    ,
    C. H. Yu
    ,
    K. B. Chandran
    DOI: 10.1061/(ASCE)0733-9399(1987)113:8(1147)
    Publisher: American Society of Civil Engineers
    Abstract: The unsteady flow past a disc‐type valve in an axisymmetric tube has been calculated numerically from the governing Navier‐Stokes equations. The flow is assumed to be laminar and incompressible, and the fluid possesses constant properties. Numerical solutions for unsteady flow patterns and pressure drops across the valve are obtained. The finite analytic numerical method is used to solve the Navier‐Stokes equations expressed in terms of pressure and velocities. In the present investigation, the finite analytic solution has been obtained for pulsatile flow past the disc‐type valve at a Reynolds number of 100 based on the tube diameter and the maximum mean velocity during the pulsatile flow. A comparison of the results with that for steady flow at a corresponding Reynolds number showed that, in unsteady flow, larger shear stresses at the edge of the valve ring were observed along with substantial changes in the separation characteristics downstream to the valve. The applicability of the results to delineate the effect of flow past valve prosthesis in vivo is briefly discussed.
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      Finite Analytic Numerical Solution of Unsteady Laminar Flow Past Disc‐Valves

    URI
    http://yetl.yabesh.ir/yetl1/handle/yetl/76843
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    • Journal of Engineering Mechanics

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    contributor authorC. J. Chen
    contributor authorC. H. Yu
    contributor authorK. B. Chandran
    date accessioned2017-05-08T22:18:10Z
    date available2017-05-08T22:18:10Z
    date copyrightAugust 1987
    date issued1987
    identifier other%28asce%290733-9399%281987%29113%3A8%281147%29.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/76843
    description abstractThe unsteady flow past a disc‐type valve in an axisymmetric tube has been calculated numerically from the governing Navier‐Stokes equations. The flow is assumed to be laminar and incompressible, and the fluid possesses constant properties. Numerical solutions for unsteady flow patterns and pressure drops across the valve are obtained. The finite analytic numerical method is used to solve the Navier‐Stokes equations expressed in terms of pressure and velocities. In the present investigation, the finite analytic solution has been obtained for pulsatile flow past the disc‐type valve at a Reynolds number of 100 based on the tube diameter and the maximum mean velocity during the pulsatile flow. A comparison of the results with that for steady flow at a corresponding Reynolds number showed that, in unsteady flow, larger shear stresses at the edge of the valve ring were observed along with substantial changes in the separation characteristics downstream to the valve. The applicability of the results to delineate the effect of flow past valve prosthesis in vivo is briefly discussed.
    publisherAmerican Society of Civil Engineers
    titleFinite Analytic Numerical Solution of Unsteady Laminar Flow Past Disc‐Valves
    typeJournal Paper
    journal volume113
    journal issue8
    journal titleJournal of Engineering Mechanics
    identifier doi10.1061/(ASCE)0733-9399(1987)113:8(1147)
    treeJournal of Engineering Mechanics:;1987:;Volume ( 113 ):;issue: 008
    contenttypeFulltext
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