Thermal considerations in the solution of finite journal bearings
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Abstract The full journal bearing of finite length is solved for the thermohydrodynamic case in which the energy transmitted by conduction is included. The three-dimensional temperature distribution and the pressure distribution are numerically obtained. The operating parameters of the bearing are calculated and are compared with those obtained from the classical adiabatic solution. The effect of the consideration of temperature variation across the film thickness on bearing performance is investigated.
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