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Progress in aerodynamic and aeroacoustic integration of CROR propulsion systems

机译:CROR推进系统在空气动力学和空气声学方面的集成进展

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摘要

Contra-Rotating Open Rotor (CROR) propulsion systems have seen renewed interest as an economic and environmentally friendly powerplant for future transport aircraft. Installation effects, i.e. the mutual interactions between airframe components and the rotors, have a pronounced impact on the aerodynamic and aeroacoustic performance for this type of engine. In the past five years, DLR's Institute of Aerodynamics and Flow Technology has performed a number of numerical studies investigating important aspects relating to engine-airframe integration of CROR engines. In this article an overview of coupled aerodynamic and aeroacoustic simulations investigating representative pusher-configuration CROR engines will be given, focusing on the impact on aerodynamic performance and aeroacoustics caused by the presence of a pylon, the potential for noise reduction by employing trailing-edge blowing at the pylon trailing edge as well as the performance and noise variations caused by different senses of rotation of the rotors. It is shown that the interaction with the pylon strongly impacts blade performance and front rotor noise emissions but that the use of active flow control in the form of pylon trailing-edge blowing can alleviate these adverse installation effects to a notable extent.
机译:旋转开放式转子(CROR)推进系统已经重新引起了人们的兴趣,将其作为未来运输机的一种经济,环保的动力装置。安装效果,即机身部件和旋翼之间的相互影响,对这种类型的发动机的空气动力学和空气声学性能具有显着影响。在过去的五年中,DLR的空气动力学与流量技术研究所进行了许多数值研究,研究了与CROR发动机的发动机-机体集成相关的重要方面。在本文中,将给出空气动力学和空气声学耦合模拟的概述,以研究具有代表性的推进器配置CROR发动机,重点是吊架的存在对空气动力学性能和空气声学的影响,以及采用后缘吹气降低噪音的潜力在塔架后缘处,以及由于转子旋转方向不同而引起的性能和噪声变化。结果表明,与塔架的相互作用极大地影响了叶片性能和前转子噪声的排放,但是采用以塔架后缘吹气的形式进行的主动流量控制可以显着减轻这些不利的安装效果。

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  • 来源
    《The Aeronautical Journal》 |2014年第1208期|1137-1158|共22页
  • 作者单位

    DLR Institute of Aerodynamics and Flow Technology Lilienthalplatz, Braunschweig Germany;

    DLR Institute of Aerodynamics and Flow Technology Lilienthalplatz, Braunschweig Germany;

    DLR Institute of Aerodynamics and Flow Technology Lilienthalplatz, Braunschweig Germany;

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