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An engineering model of solids diffusivity in a turbulent pipeline slurry flow is developed.
The algorithm has been applied for prediction of pressure drop of solid liquid slurry flow.
This paper studied the slurry erosion of HPP during hydraulic fracturing slurry flow.
Multiple sliding velocities, slurry flow rates and ring pressures were investigated.
This paper presents a method for calculating erodent particle trajectories in slurry flow.
The CFD-PBM approach was also performed under various boundary conditions of ice slurry flow.
Wear patterns on tester components reveal that slurry flow is similar to that predicted theoretically.
The dependence of turbulent slurry flow on the hydrate volume fraction has been studied.
A model describing a shear-thinning slurry flow in a flat channel is developed.
The effect of retaining ring slot design and polishing conditions on slurry flow dynamics at the bow wave was investigated.
The results show that, the ice slurry flow distribution will appear varying degree of asymmetry under different operating conditions.
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