A Textbook of Fluid Mechanics |
Contents
Properties of Fluids | 1 |
Flow Past Immersed Bodies | 11 |
Pressure and its Measurement | 36 |
Hydrostatic Forces on Submerged Surfaces | 69 |
Pages | 109 |
Buoyancy and Floatation | 113 |
Fluid Kinematics | 145 |
3668 | 168 |
Fluid Flow Measurements | 250 |
Flow Through Pipes | 293 |
181223 | 305 |
364409 | 364 |
Viscous Flow | 406 |
410468 | 410 |
69112 | 414 |
469501 | 469 |
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Common terms and phrases
A₁ A₂ acceleration Applying Bernoulli's equation Area Bernoulli's equation body C₁ centre of buoyancy centre of gravity centre of pressure cm² co-efficient continuity equation cylinder d₁ d₂ Delhi University density depth differential manometer dimensions discharge distance due to friction equilibrium F₁ Find floating fluid flow free surface given by equation h₁ h₂ head due head loss Hence horizontal inlet kg/m³ Kinematic viscosity L₁ liquid lit/s litres/s loss of head m³/s manometer mercury meta-centric height N/cm² N/m² oil of sp P₁ P₂ Pg 2g pipe of diameter plate poise pressure head Problem prototype Q₂ rate of flow rectangular Reynold number scale ratio shear stress shown in Fig Solution specific gravity stream function Substituting the values tank throat total pressure tube V₁ velocity of flow velocity potential venturimeter vertical Volume water surface ди др