The Preliminary Design of Advanced Propulsors

J. Kerwin
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引用次数: 6

Abstract

Potential propulsors for current applications may vary in complexity from traditional open propellers to podded propulsors, multiple blade-row ducted units, and waterjets. In the past, the lifting-line theory has been an effective tool in establishing the principal characteristics of an optimum propeller design. Similarly, turbomachinery through-flow theory has been effective in preliminary estimates for internal flow devices such as waterjets. What is currently lacking is a single, unified approach that can be used for a wide range of propulsor types. This paper presents a possible solution to this problem, based on recent experience in detailed design methods based on coupling lifting surface theory with axisymmetric RANS/Euler solvers. In the present method, lifting-line representations of the blade rows are coupled with an axisymmetric Euler/Boundary Layer solver to provide preliminary estimates of propulsor performance.
先进推进器的初步设计
当前应用的潜在推进器可能在复杂程度上有所不同,从传统的开放式推进器到吊舱式推进器、多叶排导管装置和水射流。过去,升力线理论一直是确定最佳螺旋桨设计的主要特征的有效工具。同样,涡轮机械通流理论在水射流等内部流动装置的初步估计中也是有效的。目前缺乏的是一种单一的、统一的方法,可以用于各种类型的推进器。本文根据近年来基于升力面理论与轴对称RANS/欧拉求解耦合的详细设计方法的经验,提出了一种可能的解决方案。在本方法中,叶片排的升力线表示与轴对称欧拉/边界层求解器相结合,以提供推进器性能的初步估计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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