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The optimization results indicated that the optimized geometry can produce a maximum power coefficient, 44% higher than the maximum power coefficient of the original turbine.
The design of the turbine for maximum power coefficient is discussed.
The maximum power coefficient of 51% is obtained at no overlap condition.
The maximum power coefficient was 0.25 at tip speed ratio (TSR) of 0.73.
Their optimum operating conditions (maximum power coefficient) depend on rotor solidity and tip speed ratio [22].
The maximum power coefficient of 51% was found where there was no overlap.
Similar(18)
Maximum power coefficients are recalculated based on the maximum area of shroud and are found to be comparable to that of the unshrouded turbine.
Initially, a comparison of performance between two- and three-bladed SHT with conventional semicircular blades has been carried out experimentally where their maximum power coefficients are found to be 0.28 and 0.17, respectively at their corresponding tip-speed ratios of 0.84 and 0.67.
As a result, the fundamental MCF mode has the maximum power reflection coefficient on the right-hand side of the MCF laser cavity, and dominates the output laser power.
The maximum average power coefficient is 0.00464, which corresponds to an average power of 139.60 W.
Finally, the maximum ideal power coefficient has been found for a given configuration, which helps to estimate the margin for improvement of an actual design.
More suggestions(15)
maximum torque coefficient
maximum correlation coefficient
maximum power transfer
maximum power method
maximum attenuation coefficient
maximum power draw
maximum Information coefficient
maximum power input
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maximum power density
maximum r2 coefficient
maximum power kW
maximum coupling coefficient
maximum power extraction
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