Solving propeller optimization problems by using helical vortex and exact penalty methods

被引:0
作者
Danilo Azevedo
Joel L. C. Reis
Ricardo L. U. de F. Pinto
机构
[1] Federal University of Minas Gerais,Graduate Program in Mechanical Engineering
[2] Federal University of Piauí,School of Mechanical Engineering
[3] UFPI,undefined
来源
Journal of the Brazilian Society of Mechanical Sciences and Engineering | 2023年 / 45卷
关键词
Propeller design; Helical vortex; Exact penalty method;
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摘要
An alternative procedure of finding a propeller's optimal circulation distribution and geometry is presented. The method uses a helical vortex model for aerodynamic calculations and an exact penalty method to formulate the constrained optimization problem as an unconstrained nonlinear programming problem. An example case for optimal circulation distribution from the literature was used for comparison. The method showed a good fit with the exact solutions, namely the inviscid and the infinite number of blades cases. For the general case considering the viscosity and a finite number of blades, the model performed better than the benchmarks blade element momentum methods. The geometry was also optimized, and the geometric twist and chord distribution were calculated for the general case, for a given twist or chord distribution and for a given activity factor, increasing in 4% to 6% the efficiency when compared to the geometries available on the references for all cases.
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