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    Laminar Boundary-Layer Flow Near the Entry of a Curved Circular Pipe 

    Source: Journal of Applied Mechanics:;1980:;volume( 047 ):;issue: 004:;page 697
    Author(s): W. S. Yeung
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: The fluid mechanics of a viscous, incompressible fluid entering a circular curved pipe at large Reynolds number is investigated numerically. The flow field is divided into two regions, the ...
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    Similarity Analysis of Gas-Liquid Spray Systems 

    Source: Journal of Applied Mechanics:;1982:;volume( 049 ):;issue: 004:;page 687
    Author(s): W.-S. Yeung
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: This paper discusses the fluid mechanics of the droplet-dispersed region of a liquid-spray system. Similarity solutions are sought under various assumptions for two types of common spray: the ...
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    A Numerical Investigation for Curved Pipe Flow at High Reynolds Number 

    Source: Journal of Applied Mechanics:;1983:;volume( 050 ):;issue: 002:;page 239
    Author(s): M. Holt; W.-S. Yeung
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: A numerical scheme for solving the curved pipe flow at high Reynolds number is presented in considerable detail. This paper complements an earlier paper presenting mainly numerical results. An ...
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    Application of the Method of Integral Relations to the Calculation of Two-Dimensional Incompressible Turbulent Boundary Layer 

    Source: Journal of Applied Mechanics:;1981:;volume( 048 ):;issue: 004:;page 701
    Author(s): W.-S. Yeung; R.-J. Yang
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: The orthonormal version of the Method of Integral Relations (MIR) was applied to solve for a two-dimensional incompressible turbulent boundary layer. The flow was assumed to be nonseparating. ...
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