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Design parameters, like blade number, blade outlet angle and impeller outlet diameter, affect pump performance and energy consumption.
The outlet angle of the swirl vanes, volumetric flow rate and the density of the working fluid affect the separation efficiency simultaneously.
The other parameters were: the nozzle outlet angle - 5º; the rotor blade input angle - 8.1º; the dimensionless peripheral speed - 0.44; the degree of pressure reduction per stage - 19.7.
This study reports on the effects of vane outlet angle on thermo-fluidic characteristics of curved vane brake discs via validated numerical models.
Further, the increase of outlet angle results in stronger flow impingement on pressure sides of the vanes and hence enhances local heat transfer.
It was found that the blade outlet angle β2 and the impeller inlet diameter D0 significantly influence the pressure head H and the hydraulic efficiency η, respectively.
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Three vane outlet angles (45°, 90° and 135°) are considered.
This makes it possible to increase the efficiency of the microturbines, which have nozzles with outlet angles from 5º to 9º.Microturbine efficiency research was carried on an experimental turbine.The studied turbine power reached 80 kW.
This study aims to significantly improve the performance of PAT by designing a special impeller with forward-curve blades for the turbine working condition, and investigating the method for determining the blade inlet and outlet angles that play important roles in the energy conversion.
The difference between the preoperative anticipated inlet and outlet angles and intraoperative fluoroscopic inlet and outlet angles was determined.
The operative reports of each patient were subsequently reviewed to determine the inlet and outlet angles used intraoperatively.
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