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Weitersagen:


Herausgeber: 
  • Ekkehard Ramm
  • René de Borst
  • Multiscale Methods in Computational Mechanics: Progress and Accomplishments 
     

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


    Übersicht

    Auf mobile öffnen
     
    Lieferstatus:   i.d.R. innert 5-10 Tagen versandfertig
    Veröffentlichung:  Dezember 2012  
    Genre:  EDV / Informatik 
     
    Applied mathematics / Artificial Intelligence / C / Classical and Continuum Physics / Classical mechanics / Computational Intelligence / Computational Science and Engineering / Computer mathematics / Continuum physics / engineering / Engineering mathematics / Mathematical and Computational Engineering / Mathematical and Computational Engineering Applications / Maths for engineers / Mechanics / Mechanics of solids / Mechanics, Applied / Solid Mechanics
    ISBN:  9789400733862 
    EAN-Code: 
    9789400733862 
    Verlag:  Springer Netherlands 
    Einband:  Kartoniert  
    Sprache:  English  
    Serie:  #55 - Lecture Notes in Applied and Computational Mechanics  
    Dimensionen:  H 235 mm / B 155 mm / D 25 mm 
    Gewicht:  698 gr 
    Seiten:  464 
    Zus. Info:  Paperback 
    Bewertung: Titel bewerten / Meinung schreiben
    Inhalt:
    Many features in the behaviour of structures, materials and flows are caused by phenomena that occur at one to several scales below common levels of observation. Multiscale methods account for this scale dependence: They either derive properties at the level of observation by repeated numerical homogenization of more fundamental physical properties defined several scales below (upscaling), or they devise concurrent schemes where those parts of the domain that are of interest are computed with a higher resolution than parts that are of less interest or where the solution is varying only slowly. This work is a result of a sustained German-Dutch cooperation and written by internationally leading experts in the field and gives a modern, up-to-date account of recent developments in computational multiscale mechanics. Both upscaling and concurrent computing methodologies are addressed for a range of application areas in computational solid and fluid mechanics: Scale transitions in materials, turbulence in fluid-structure interaction problems, multiscale/multilevel optimization, multiscale poromechanics.
      



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