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EFFECTS OF FLOW DISTORTIONS AS THEY OCCUR IN S-DUCT INLETS ON THE PERFORMANCE AND STABILITY OF A JET ENGINE

机译:流动变形的影响,因为它们发生在S型入口上的喷气发动机的性能和稳定性

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One of the research areas at the Institute of Jet Propulsion focuses on the design and optimization of s-shaped engine inlet configurations. The distortion being evoked within such inlet ducts should be limited to ensure an optimal performance, stability, and durability of the engine's compression system. Computational Fluid Dynamics (CFD) play a major role in the design process of bent engine inlet ducts. The flow within such ducts can be computed, distortion patterns can be visualized, and related distortion coefficients are easily calculated. The impact of a distortion on flow phenomena within the compressor system can, however, only be computed with major computational efforts and thus the quality of an s-duct design in development is usually assessed by analyzing the evoked distortion with suitable distortion coefficients without a true knowledge of the duct's influence on the downstream propulsion system. The influence of inlet distortion on both the performance and stability of the Larzac 04 jet engine was parameterized during experimental investigations at the engine test bed of the Institute of Jet Propulsion. Both pressure and swirl distortion patterns as they typically occur in s-duct inlet configurations were reproduced with distortion generators. Pressure distortion patterns were generated using seven types of distortion screens. The intensity of the distortion varies with the mesh size of the screen whereas the extension of the distortion is defined by the dimensions of the screen in radial and circumferential direction. A typical counter rotating twin-swirl was generated with a delta-wing installed upstream of the compressor system.
机译:喷气机推进研究所的一个研究领域侧重于S形发动机入口配置的设计和优化。在这种入口管道内诱发的变形应该限于于发动机压缩系统的最佳性能,稳定性和耐用性。计算流体动力学(CFD)在弯曲发动机入口管道的设计过程中起主要作用。可以计算这种管道内的流动,可以可视化失真模式,并且可以容易地计算相关的失真系数。然而,只有通过主要的计算工作,才能计算压缩机系统内流动现象的影响,因此通常通过分析具有正确的失真系数的诱发失真来评估开发中的S-Dive设计的质量。没有真实的对管道对下游推进系统的影响。入口变形对拉扎克04喷射发动机的性能和稳定性的影响在喷射推进研究所的发动机试验床上的实验研究期间参数化。由于它们通常在S-Dive Inlet配置中发生压力和涡流变形图案,以失真发生器再现。使用七种类型的失真屏幕生成压力失真模式。失真的强度随屏幕的网格尺寸而变化,而失真的延伸由屏幕的尺寸在径向和圆周方向上限定。使用安装在压缩机系统上游的Δ-翼产生典型的计数器旋转双旋转。

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