By C P Kothandaraman
Numerical examples for every of the equations derived; Solved difficulties to focus on entire spectrum of functions; aim questions for self review; Graded difficulties for workouts, ordinarily with answers
This booklet is meant to be used in undergraduate classes of civil, mechanical and chemical engineering; the SI procedure of devices is followed all through. on the way to supply wide perform within the program of assorted recommendations, the subsequent structure is utilized in all of the chapters. Enunciation of uncomplicated recommendations; improvement of actual and mathematical versions with interspersed numerical examples; Illustrative examples concerning the appliance and extension of the types built; aim questions and workout difficulties
desk of Contents: actual homes of Fluids/ strain Distribution in Fluids/ Forces on Surfaces Immersed in Fluids/ Buoyancy Forces and balance of Floating our bodies/ Fluid Flower easy innovations Hydrodynamics/ Bernoulli Equation and functions/ stream in closed Conduits (Pipes)/ Dimensional research/ Similitude and version trying out/ Boundary Layer conception and move over Surfaces/ move Measurements/ circulate in Open Channels/ Dynamics of fluid movement/ Hydraulic generators/ Rotodynamic Pumps/ Reciprocating Pumps/ Appendix
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Extra info for Fluid mechanics and machinery
Density is the ratio of mass of unit volume of liquid to the mass of unit volume of water. 2. In the gas equation temperature should be used in Kelvin scale. 3. Specific weight is the mass of unit volume. 4. The cohesive forces are highest in gases. 5. The shear force in solid is proportional to the deformation. 6. In fluids the shear force is proportional to the rate of deformation. 7. Newtonian fluid is one whose viscosity will increase directly with rate of deformation. 8. The vapour pressure will vary with temperature.
29/60 = 458W. 18. Determine the capillary depression of mercury in a 4 mm ID glass tube. 45 N/m and β =115°. 19. A ring 200 mm mean dia is to be separated from water surface as shown in figure. 1005 N. Determine the surface tension of water. 19 The total length of contact just before lifting from the surface will be twice the circumference or 2πD. The force will equal the product of surface tension and the length of contact. 1005 N. 08 N/m The surface tension of a liquid can be measured using this principle provided the fluid wets the surface.
Distinguish between Newtonian and non Newtonian Fluids. 11. Explain from microscopic point of view the concept of viscosity and momentum transfer. Explain how viscosity of liquids and gases behave with temperature. 12. Define kinematic viscosity and explain the significance of the same. 13. Derive an expression for the torque and power required to overcome the viscous drag for a shaft running at a particular rpm. 14. Derive an expression for the torque required to rotate a collar bearing (disc over a parallel plate).
Fluid mechanics and machinery by C P Kothandaraman