定子
转子(电动)
螺旋桨
推进器
喷嘴
解算器
分离涡模拟
推进效率
工程类
计算流体力学
海洋工程
优化设计
参数化设计
参数统计
计算机科学
机械工程
航空航天工程
雷诺平均Navier-Stokes方程
数学
推力
统计
机器学习
程序设计语言
作者
Stefano Gaggero,Mattia Martinelli
标识
DOI:10.1016/j.oceaneng.2023.114304
摘要
The design of pumpjet propulsors (PJP) is addressed through a simulation-based design optimization approach built on a parametric description of the main geometrical characteristics of the system, a RANSE solver with mixing plane interface capabilities and a genetic algorithm. Both Rotor/Stator (PJP-R/S) and Stator/Rotor (PJP-S/R) configurations are considered and optimal designs from a multi-objective optimization process aimed at maximizing the propulsive efficiency at the lowest possible cavitation inception index are compared to a reference ducted propeller with decelerating nozzle (Gaggero et al., 2012), which served as baseline during the design. Detached Eddy Simulations (DES) were finally carried out to highlight, in addition to the performance improvements provided by the PJPs, also the influence of the rotor/stator/nozzle interactions on the vortical structures shed by the propulsor.
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