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Analysis of Ares Crew Launch Vehicle Transonic Alternating Flow Phenomenon

机译:战神运载火箭跨音速交流流现象分析。

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摘要

A transonic wind tunnel test of the Ares I-X Rigid Buffet Model (RBM) identified a Mach number regime where unusually large buffet loads are present. A subsequent investigation identified the cause of these loads to be an alternating flow phenomenon at the Crew Module-Service Module junction. The conical design of the Ares I-X Crew Module and the cylindrical design of the Service Module exposes the vehicle to unsteady pressure loads due to the sudden transition between a subsonic separated and a supersonic attached flow about the cone-cylinder junction as the local flow randomly fluctuates back and forth between the two flow states. These fluctuations produce a square-wave like pattern in the pressure time histories resulting in large amplitude, impulsive buffet loads. Subsequent testing of the Ares I RBM found much lower buffet loads since the evolved Ares I design includes an ogive fairing that covers the Crew Module-Service Module junction, thereby making the vehicle less susceptible to the onset of alternating flow. An analysis of the alternating flow separation and attachment phenomenon indicates that the phenomenon is most severe at low angles of attack and exacerbated by the presence of vehicle protuberances. A launch vehicle may experience either a single or, at most, a few impulsive loads since it is constantly accelerating during ascent rather than dwelling at constant flow conditions in a wind tunnel. A comparison of a windtunnel- test-data-derived impulsive load to flight-test-data-derived load indicates a significant over-prediction in the magnitude and duration of the buffet load. I. Introduction One
机译:在Ares I-X刚性自助餐模型(RBM)的跨音速风洞测试中,确定了存在异常大的自助餐负载的马赫数状态。随后的调查确定了这些负载的原因是机组模块-服务模块交界处的交替流动现象。 Ares IX乘员模块的锥形设计和维修模块的圆柱形设计使车辆承受不稳定的压力负载,这是由于局部流随机波动时,亚音速分离流和超音速附着流围绕圆锥体-圆柱体结点之间突然过渡在两个流动状态之间来回移动。这些波动会在压力时间历史中产生方波状模式,从而导致大幅度的脉冲式自助负载。随后对Ares I RBM进行的测试发现,由于改进后的Ares I设计包括覆盖船员模块与服务模块交汇处的简易整流罩,因此自助餐负荷要低得多,从而使车辆不易受到交替流动的影响。对交替流动分离和附着现象的分析表明,这种现象在低攻角下最为严重,并且由于存在车辆突起而加剧了。由于运载火箭在上升过程中不断加速而不是停留在风洞中的恒定流量条件下,因此运载火箭可能会承受单个或最多几个脉冲载荷。风洞测试数据得出的脉冲负载与飞行测试数据得出的负载的比较表明,自助负载的大小和持续时间存在明显的过高预测。一,引言一

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