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The runner with a negative blade lean has better stability than the runner with a positive blade lean.
Two runners, one with a large positive blade lean and another with a large negative blade lean, were selected for further numerical investigations and measurements.
The key parameters in the design, including the blade loading, the blade lean at the high-pressure side of the runner, and the meridional channel shape, were selected as the optimized parameters.
The results show that in the turbine entry NGV, the secondary flow strength is not a dominant factor that determines NGV losses and therefore the changes of loading distribution due to blade lean and the associated loss mechanisms should be regarded as a key factor.
The distribution of mass flow ratio is introduced as an additional factor in the assessment of blade lean effects.
The effects of blade lean and vortex design on the aerodynamics of a turbine entry nozzle guide vane (NGV) are considered using computational fluid dynamics.
Similar(54)
In maize, the ligule and auricles allow the leaf blade to lean away from the sheath, which remains wrapped around the stalk (Foster and Timmermans 2009; Kiesselbach 1949).
However, with backward curved vanes, the blades lean strongly backwards making sin relatively large and the above statement does not hold good.
The blade stacking lean angle is one of the main geometric parameters in impeller design.
A three-dimensional Computational Fluid Dynamic (CFD) simulation was used to examine four proposed blade configurations (lean, sweep, twist, bowl) with three hub- tip ratios (0.83, 0.75, 0.66).
A multi-objective optimization algorithm approach is employed for the optimization of wind turbine blades with 3D stacking line (swept leaned blades).
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