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Application of Hydrodynamic Theory
The Sommerfeld Bearing
Numerical Solutions of Reynolds Equations
11 other sections not shown
AN/W assumption average pressure average viscosity bearing length Bearing load bearing operative characteristics Bearing Performance 19 Boyd's numerical solutions calculated CALL NEMAT CHECK DELT 2 PMAX design domain design graphs design procedure designer's dimensionless feasible region FORMAT frictional high speeds hydrodynamic journal bearings hydrodynamic lubrication hydrodynamic theory improved merit in’/sec input Iſh Journal radius kinuă lb/in length/diameter ratio Lubrication Conference mathematical maximum local pressure merit value minimum film thickness objective function oil film oil temperature rise Oil Whip operative constraints optimization optimum clearance optimum design P S v DELT Parameters relevant partial derivatives PRINT profilometer R++2 radial clearance Raimondi and Boyd's Relative merit factor Reynold's equation reyns rotor SAE oil side constraints Sommerfeld Speed R. P. M. Fig STAB-SIR Steepest Descent subroutines Superfinished surface finish techniques University of Wisconsin velocity