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Numerically-based ducted propeller design using vortex lattice lifting line theory

机译:基于数字的管道螺旋桨设计采用涡旋格构提升线理论

摘要

This thesis used vortex lattice lifting line theory to model an axisymmetrical-ducted propeller with no gap between the duct and the propeller. The theory required to model the duct and its interaction with the propeller were discussed and implemented in Open-source Propeller Design and Analysis Program (OpenProp). Two routines for determining the optimum circulation distribution were considered, and a method based on calculus of variations was selected. The results of this model were compared with the MIT Propeller Lifting Line Program (PLL) output for the purpose of validation. Ducted propellers are prevalent in modem marine propulsion systems, and the application of this technology continues to expand. The theory associated with ducted propellers applies to a wide-range of devices which include azimuth thrusters, pumpjets, and tidal turbines. Regardless of the application, engineers need tools such as OpenProp to design these devices for their expected operating conditions. OpenProp is an open source MATLAB®-based suite of propeller numerical design tools. Previously, the program only designed open propellers. The code developed in this thesis extended OpenProp's capability to be able to design a propeller within an axisymmetrical duct.
机译:本文采用涡流格栅提升线理论对轴对称导管进行建模,导管与螺旋桨之间无间隙。在开放源代码螺旋桨设计和分析程序(OpenProp)中讨论并实现了对管道及其与螺旋桨相互作用进行建模所需的理论。考虑了确定最佳循环分布的两个程序,并选择了一种基于微积分的方法。为了验证,将该模型的结果与MIT螺旋桨提升线程序(PLL)输出进行了比较。管道螺旋桨在现代船舶推进系统中十分普遍,并且该技术的应用不断扩展。与导管式螺旋桨相关的理论适用于多种设备,包括方位角推进器,泵式喷气发动机和潮汐涡轮机。无论何种应用,工程师都需要诸如OpenProp之类的工具来为预期的工作条件设计这些设备。 OpenProp是基于MATLAB®的开源螺旋桨数值设计工具套件。以前,该程序仅设计开放式螺旋桨。本文开发的代码扩展了OpenProp的功能,使其能够在轴对称导管内设计螺旋桨。

著录项

  • 作者

    Stubblefield John M;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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