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REQUIREMENTS AND ADVANCES IN SIMULATING AIRCRAFT INLET TOTAL-PRESSURE DISTORTION IN TURBINE ENGINE GROUND TESTS

机译:涡轮发动机地面试验中模拟飞机入口总压变形的要求和进步

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The development of high-performance aircraft demands the successful integration of the airframe, engine, and control systems. Advancements in aircraft technologies bring with them the need to improve the computational and experimental tools applied to the airframe-engine compatibility evaluations. This paper focuses on the need to improve one of these tools, the direct-connect turbine engine test method. In particular, the paper advocates improving the direct-connect test simulation of the total-pressure distortion induced in flight by the external airframe and the inlet system. To meet the needs of future direct-connect tests, AEDC embarked on the development of a transient total-pressure distortion generator. The paper first introduces specific total pressure pattern simulation requirements that form the basis for the development and results of the distortion generator development process. Included are sample distortion generator concept test results and a description of a fully functional prototype that is in fabrication. Next, the paper summarizes a parallel development of computational fluid dynamics (CFD) tools that will be applied to adapting the prototype design to specific test facilities and to the operation of the distortion generator in turbine engine tests. The paper concludes with a look ahead from the total-pressure distortion methodology to test and computational methodologies for other parameters, with emphasis on swirl.
机译:高性能飞机的开发需要成功集成机身,发动机和控制系统。飞机技术的进步带来了他们需要改进应用于机身发动机兼容性评价的计算和实验工具。本文侧重于改善其中一个工具,直接连接涡轮发动机测试方法。特别是,纸张倡导改善由外部机身和入口系统在飞行中引起的总压力变形的直接连接测试模拟。为满足未来直接连接测试的需求,AEDC开始开发瞬态总压力变形发生器。本文首先介绍了特定的总压力模式仿真要求,形成了失真发生器开发过程的开发和结果的基础。包括样本失真发生器概念概念测试结果以及在制造中的全功能原型的描述。接下来,本文总结了计算流体动力学(CFD)工具的平行发展,该工具将应用于将原型设计适用于特定的测试设施,并在涡轮发动机测试中的失真发生器的操作。本文的结论是从总压力变形方法的展望,以测试和计算方法的其他参数,重点是旋流。

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