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Dimensional Analysis and Similarity in Fluid Mechanics

Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor principal: Sad Chemloul, Nord-Eddine
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Newark : John Wiley & Sons, Incorporated, 2020.
Temas:
Acceso en línea:Texto completo
Tabla de Contenidos:
  • Cover
  • Half-Title Page
  • Title page
  • Copyright Page
  • Contents
  • Foreword
  • Preface
  • Introduction
  • 1. Homogeneity of Relationships and Conversion of Units
  • 1.1. Introduction
  • 1.2. Definitions of the basic SI units
  • 1.2.1. Definition of the meter as adopted in 1983
  • 1.2.2. Definition of the kilogram
  • 1.2.3. Definition of the second adopted in 1967
  • 1.2.4. Definition of the ampere adopted in 1948
  • 1.2.5. Definition of Kelvin adopted in 1967
  • 1.2.6. Definition of a mole
  • 1.2.7. Definition of the candela adopted in 1979
  • 1.3. Additional quantities and SI derived quantities
  • 1.4. Rules for the use of units
  • 1.4.1. Unit name
  • 1.4.2. Unit symbols
  • 1.4.3. Compound symbols
  • 1.5. Exercises
  • 1.5.1. Exercise 1: calculation of dimensions
  • 1.5.2. Exercise 2: homogeneity of relationships
  • 1.5.3. Exercise 3: dimension of the constants of an equation
  • 1.5.4. Exercise 4: equation for perfect gases
  • 1.5.5. Exercise 5: unit conversions
  • 2. Dimensional Analysis: Rayleigh Method and Vaschy-Buckingham Method
  • 2.1. Introduction
  • 2.2. Definition of dimensional analysis
  • 2.3. The Rayleigh method
  • 2.6.3. Exercise 15: drag force exerted on a sphere
  • 2.6.4. Exercise 16: hydraulic jump
  • 2.6.5. Exercise 17: flow through a thin-walled spillway with a horizontal crested
  • 2.6.6. Exercise 18: flow through a triangular weir
  • 2.6.7. Exercise 19: volume of a bubble
  • 2.6.8. Exercise 20: flow through an orifice
  • 2.6.9. Exercise 21: sudden narrowing of a section
  • 2.6.10. Exercise 22: capillary tube
  • 2.6.11. Exercise 23: deformation of a bubble
  • 2.6.12. Exercise 24: laminar dynamic boundary layer on a flat plate
  • 2.6.13. Exercise 25: power of a stirrer
  • 3. Similarity of Flows