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Multidisciplinary analysis of CROR propulsion systems: DLR activities in the JTI SFWA project

机译:CROR推进系统的多学科分析:JTI SFWA项目中的DLR活动

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In the frame of the EU 7th Framework Joint Technology Initiative Smart Fixed Wing Aircraft project, the DLR Institute of Aerodynamics and Flow Technology (DLR-AS) is participating as an associated partner in the Airbus-led studies of the Contra-Rotating Open Rotor (CROR) as possible powerplant for future transport aircraft. Due to significant technical challenges in terms of noise emissions, installation effects and certification that still need to be addressed for this novel propulsion system, the numerical activities require the use of sophisticated multidisciplinary analysis tools and approaches covering aerodynamics, aeroacoustics and aeroelastics. In this paper an overview of the DLR-AS work in the project is given, which covers the numerical assessment of a novel noise reduction technology, an initial study of blade aeroelas-ticity as well as some in-depth studies on isolated and installed pusher-configuration CROR engine configurations. The first results of a validation of the numerical simulations using experimental test data that is being generated in Airbus-led low-speed wind tunnel tests are also presented.
机译:在欧盟第七框架联合技术倡议智能固定翼飞机项目的框架内,DLR空气动力学和流动技术研究所(DLR-AS)作为合作伙伴参与了由空客主导的对转旋翼开放式转子研究( CROR)作为未来运输飞机的动力装置。由于在这种新型推进系统方面仍需要解决噪声排放,安装效果和认证方面的重大技术挑战,因此数值活动需要使用复杂的多学科分析工具和方法,包括空气动力学,航空声学和气动弹性。本文概述了该项目中的DLR-AS工作,其中包括新型降噪技术的数值评估,叶片气动弹性的初步研究以及对隔离式和安装式推进器的一些深入研究。配置CROR引擎配置。还介绍了使用空客主导的低速风洞测试中生成的实验测试数据对数值模拟进行验证的第一个结果。

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