Tag: Fluid Mechanics
-
Fluid masses subjected to acceleration along inclined plane
-
Fluid masses subjected to horizontal acceleration
-
Fluid masses subjected to vertical acceleration
-
An analysis of Axial Flow Turbines using both the Euler and Aerofoil Theories.
-
The background to Bernoulli's Theorem.
-
The application of the Bernoulli's equation to Branched pipes.
-
An analysis of Cavitation which can lead to loss of performance and physical damage to hydraulic machines.
-
The phase velocity of a wave (also known as 'wave celerity')
-
Velocity triangles, Manometric Head and Efficiency
-
Pressure head loss due to change in pipe size or shape
-
Mean flow velocity within pipes with turbulent flow
-
Time of emptying a circular horizontal tank through an orifice at its bottom
-
This analysis of water hammer allows for the compressibility of water and the expansion of the pipe
-
Discharge and Pressure in a Convergent Mouthpiece
-
Discharge and Pressure in a Convergent - Divergent Mouthpiece
-
Darcy's formula for loss of head in pipe
-
Discharge over different types of weirs
-
Uses a linear dispersion relationship to compute wave-frequency from wave-number
-
Discharge through a drowned orifice
-
Euler's equation for motion
-
Discharge and Pressure in an External Mouthpiece
-
The forces created in Pipe bends by a combination of static, dynamic,and frictional forces.
-
The velocity of a wave group (also known as 'group celerity')
-
Time of emptying a hemispherical tank through an orifice at its bottom
-
Velocity triangles for both Impulse and Reaction Turbines and the Force on the Blades
-
An anlysis of Water Hammer based on the assumption that water is incompressible.
-
Discharge and Pressure in an Internal Mouthpiece
-
Brief description about notches
-
Introduction to orifice