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However, optimum gas cooler pressure and optimum intermediate pressure are only marginally affected.
The optimal gas cooler pressure is tracked in real time by the controller including a tracker and a predictor.
A correlation for estimating optimum inter-stage and gas cooler pressure for the same is also formulated.
The small area ratio of ejector was conducive to high gas cooler pressure, great entrainment ratio of ejector as well as large cooling capacity and COP of system.
Furthermore, by the predictor, the optimal gas cooler pressure for a constant cooling capacity is actually approached on the experimental apparatus with a settling time about 700 s.
Using the tracker only, the gas cooler pressure and chilled water outlet temperature (cooling capacity) are well tracked rejecting the disturbances from each other.
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Relationships between cooling pressure, evaporating temperature, ambient heat transfer coefficient, capillary size, and other parameters are presented and analyzed in detail.
Besides, influences of jet temperature, cooling water temperature and cooling water pressure on the flow field and annular cooling effect are predicted and compared.
Methods of precooling include room cooling, forced-air or pressure cooling, hydrocooling, evaporative cooling, and vacuum cooling.
Meanwhile, the cooling water pressure should be controlled during the drilling process for better cooling efficiency.
Gundogan cool under pressure.
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