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Autor(en): 
  • Nader Masmoudi
  • Tristan Buckmaster
  • Vlad Vicol
  • Matthew Novack
  • Intermittent Convex Integration for the 3D Euler Equations 
     

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


    Übersicht

    Auf mobile öffnen
     
    Lieferstatus:   Auf Bestellung (Lieferzeit unbekannt)
    Veröffentlichung:  Juli 2023  
    Genre:  Schulbücher 
     
    Annals of Mathematics Studies / anomalous dissipation / Applied mathematics / Convex Integration / Euler equations / geometry / intermittency / Intermittent Convex Integration for the 3D Euler Equations# (AMS-217)
    ISBN:  9780691249544 
    EAN-Code: 
    9780691249544 
    Verlag:  University Presses 
    Einband:  Kartoniert  
    Sprache:  English  
    Dimensionen:  H 235 mm / B 156 mm / D  
    Seiten:  256 
    Illustration:  11 b/w illus. 
    Zus. Info:  Print PDF 
    Bewertung: Titel bewerten / Meinung schreiben
    Inhalt:

    A new threshold for the existence of weak solutions to the incompressible Euler equations

    To gain insight into the nature of turbulent fluids, mathematicians start from experimental facts, translate them into mathematical properties for solutions of the fundamental fluids PDEs, and construct solutions to these PDEs that exhibit turbulent properties. This book belongs to such a program, one that has brought convex integration techniques into hydrodynamics. Convex integration techniques have been used to produce solutions with precise regularity, which are necessary for the resolution of the Onsager conjecture for the 3D Euler equations, or solutions with intermittency, which are necessary for the construction of dissipative weak solutions for the Navier-Stokes equations. In this book, weak solutions to the 3D Euler equations are constructed for the first time with both non-negligible regularity and intermittency. These solutions enjoy a spatial regularity index in L^2 that can be taken as close as desired to 1/2, thus lying at the threshold of all known convex integration methods. This property matches the measured intermittent nature of turbulent flows. The construction of such solutions requires technology specifically adapted to the inhomogeneities inherent in intermittent solutions. The main technical contribution of this book is to develop convex integration techniques at the local rather than global level. This localization procedure functions as an ad hoc wavelet decomposition of the solution, carrying information about position, amplitude, and frequency in both Lagrangian and Eulerian coordinates.

      



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