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The computational results show that when the speed was set at 5 r/min, the bearing's maximum total friction moment when oscillation occurred was obviously larger than that occurred at a constant rate.
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A definite relationship between the total friction pressure loss and maximum and minimum pressure difference, or average and minimum can be determined for a micro-irrigation system under different field slope situations.
A genetic algorithm (GA) combined with orthogonal design is used to search for the optimal overall structure and the correlations about the fin heat transfer factor j and the friction factor f. The maximum total heat transfer rate and the minimum total pressure drop are taken as objective functions in the GA, respectively.
Next, total friction including pipe, perforation, and near-wellbore friction pressure is defined.
The total friction pressure loss can be considered as the sum of the total friction pressure loss for the lateral and submain.
The results indicate that the maximum total expected indirect loss is much higher than the maximum total expected direct loss.
Also, the overall (total) friction force decreases with the increase of indentation speed.
The mobilized friction coefficients (τres/σn) were calculated for all tests; in order to obtain the total friction coefficient, the residual values of shear stress were used.
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