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Autor(en): 
  • Yurii N. Grigoryev
  • Igor V. Ershov
  • Stability and Suppression of Turbulence in Relaxing Molecular Gas Flows 
     

    (Buch)
    Dieser Artikel gilt, aufgrund seiner Grösse, beim Versand als 3 Artikel!


    Übersicht

    Auf mobile öffnen
     
    Lieferstatus:   i.d.R. innert 14-24 Tagen versandfertig
    Veröffentlichung:  April 2017  
    Genre:  Naturwissensch., Medizin, Technik 
     
    Applications of Mathematics / B / Classical and Continuum Physics / Engineering Fluid Dynamics / Fluid mechanics / Fluid- and Aerodynamics / Fluids / Mathematical Applications in the Physical Sciences / Mathematical Methods in Physics / Mathematical modelling / Mathematical physics / Mechanics of fluids / Physics / Physics and Astronomy
    ISBN:  9783319553597 
    EAN-Code: 
    9783319553597 
    Verlag:  Springer International Publishing 
    Einband:  Gebunden  
    Sprache:  English  
    Serie:  #117 - Fluid Mechanics and Its Applications  
    Dimensionen:  H 241 mm / B 160 mm / D 18 mm 
    Gewicht:  567 gr 
    Seiten:  236 
    Zus. Info:  HC runder Rücken kaschiert 
    Bewertung: Titel bewerten / Meinung schreiben
    Inhalt:
    This book presents an in-depth systematic investigation of a dissipative effect which manifests itself as the growth of hydrodynamic stability and suppression of turbulence in relaxing molecular gas flows. 

    The work describes the theoretical foundations of a new way to control stability and laminar turbulent transitions in aerodynamic flows. It develops hydrodynamic models for describing thermal nonequilibrium gas flows which allow the consideration of suppression of inviscid acoustic waves in 2D shear flows. Then, nonlinear evolution of large-scale vortices and Kelvin-Helmholtz waves in relaxing shear flows are studied. Critical Reynolds numbers in supersonic Couette flows are calculated analytically and numerically within the framework of both linear and nonlinear classical energy hydrodynamic stability theories. The calculations clearly show that the relaxation process can appreciably delay the laminar-turbulent transition. The aim of the book is to show the new dissipative effect, which can be used for flow control and laminarization.

    This volume will be of interest and useful to mechanical engineers, physicists, and mathematicians who specialize in hydrodynamic stability theory, turbulence, and laminarization of flows.

      



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