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The Pi-Theorem : Applications to Fluid Mechanics and Heat and Mass Transfer / by L.P. Yarin.

Por: Colaborador(es): Tipo de material: TextoTextoSeries Experimental Fluid Mechanics ; 1Editor: Berlin, Heidelberg : Springer Berlin Heidelberg, 2012Descripción: xxv, 305 páginas 68 ilustraciones recurso en líneaTipo de contenido:
  • texto
Tipo de medio:
  • computadora
Tipo de portador:
  • recurso en línea
ISBN:
  • 9783642195655
Formatos físicos adicionales: Edición impresa:: Sin títuloClasificación LoC:
  • TA357-359
Recursos en línea:
Contenidos:
Basics of the dimensional analysis -- Application of the Pi-theorem to establish self-similarity and reduce partial differential equations to the ordinary ones -- Drag force acting on a body moving in viscous fluid -- Laminar flows in channels and pipes -- Jet flows -- Heat and mass transfer -- Turbulence -- Combustion processes.
Resumen: This volume presents applications of the Pi-Theorem to fluid mechanics and heat and mass transfer. The Pi-theorem yields a physical motivation behind many flow processes and therefore it constitutes a valuable tool for the intelligent planning of experiments in fluids. After a short introduction to the underlying differential equations and their treatments, the author presents many novel approaches how to use the Pi-theorem to understand fluid mechanical issues. The book is a great value to the fluid mechanics community, as it cuts across many subdisciplines of experimental fluid mechanics.
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Springer eBooks

Basics of the dimensional analysis -- Application of the Pi-theorem to establish self-similarity and reduce partial differential equations to the ordinary ones -- Drag force acting on a body moving in viscous fluid -- Laminar flows in channels and pipes -- Jet flows -- Heat and mass transfer -- Turbulence -- Combustion processes.

This volume presents applications of the Pi-Theorem to fluid mechanics and heat and mass transfer. The Pi-theorem yields a physical motivation behind many flow processes and therefore it constitutes a valuable tool for the intelligent planning of experiments in fluids. After a short introduction to the underlying differential equations and their treatments, the author presents many novel approaches how to use the Pi-theorem to understand fluid mechanical issues. The book is a great value to the fluid mechanics community, as it cuts across many subdisciplines of experimental fluid mechanics.

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