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・ Slip (materials science)
・ Slip (needlework)
・ SLIP (programming language)
・ Slip (song)
・ Slip (telecommunication)
・ Slip (vehicle dynamics)
・ Slip Anchor
・ Slip and fall
・ Slip angle
・ Slip Away
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・ Slip dress
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Slip factor
・ Slip forming
・ Slip Inside This House
・ Slip It In
・ Slip jig
・ Slip joint
・ Slip joint pliers
・ Slip Kid
・ Slip knot
・ Slip Lake (Minnesota)
・ Slip lane
・ Slip law
・ Slip line field
・ Slip Madigan
・ Slip melting point


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Slip factor : ウィキペディア英語版
Slip factor
In turbomachinery, the slip factor is a measure of the fluid slip in the impeller of a compressor or a turbine, mostly a centrifugal machine. Fluid slip is the deviation in the angle at which the fluid leaves the impeller from the impeller's blade/vane angle. Being quite small in axial impellers(inlet and outlet flow in same direction), slip is a very important phenomenon in radial impellers and is useful in determining the accurate estimation of work input or the energy transfer between the impeller and the fluid, rise in pressure and the velocity triangles at the impeller exit.
A simple explanation for the fluid slip can be given as :Consider an impeller with ''z'' number of blades rotating at angular velocity ω. A difference in pressure and velocity during the course of clockwise flow through the impeller passage can be observed between the trailing and leading faces of the impeller blades. High pressure and low velocity is observed at the leading face of impellers blade as compared to lower pressure with high velocity at the trailing face of the blade. This results in a circulation in the direction of ω around the impeller blade which prevents the air from acquiring the whirl velocity equivalent to impeller speed with non-uniform velocity distribution at any radius.
This phenomenon reduces the output whirl velocity, which is a measure of the net power output from a turbine or a compressor. Hence, the slip factor accommodates for a slip loss which affects the net power developed which increases with increasing flow-rate.
== Factors accounting for slip factor ==

* Relative eddy.
* Back eddy.
* Impeller design or geometry
# Mean blade loading.
# Thickness of blade.
# Finite number of blades.
* Fluid entry conditions.
* Working fluid's viscosity.
* Effect of boundary layer growth.
* Flow separation.
* Friction forces on the walls of flow packages.
* Boundary layer blockage.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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