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Sensitivity of Space Launch System Buffet Forcing Functions to Buffet Mitigation Options

机译:空间发射系统自助式的灵敏度强制函数以自助缓解选项

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Time-varying buffet forcing functions arise from unsteady aerodynamic pressures and are one of many load environments, which contribute to the overall loading condition of a launch vehicle during ascent through the atmosphere. The buffet environment is typically highest at transonic conditions and can excite the vehicle dynamic modes of vibration. The vehicle response to these buffet forcing functions may cause high structural bending moments and vibratory environments, which can exceed the capabilities of the structure, or of vehicle components such as payloads and avionics. Vehicle configurations, protuberances, payload fairings, and large changes in stage diameter can trigger undesirable buffet environments. The Space Launch System (SLS) multi-body configuration and its structural dynamic characteristics presented challenges to the load cycle design process with respect to buffet-induced loads and responses. An initial wind-tunnel test of a 3-percent scale SLS rigid buffet model was conducted in 2012 and revealed high buffet environments behind the booster forward attachment protuberance, which contributed to reduced vehicle structural margins. Six buffet mitigation options were explored to alleviate the high buffet environments including modified booster nose cones and fences/strakes on the booster and core. These studies led to a second buffet test program that was conducted in 2014 to assess the ability of the buffet mitigation options to reduce buffet environments on the vehicle. This paper will present comparisons of buffet forcing functions from each of the buffet mitigation options tested, with a focus on sectional forcing function rms levels within regions of the vehicle prone to high buffet environments.
机译:从不稳定的空气动力学压力产生时变自助式迫使功能,并且是许多负载环境之一,这有助于在大气中上升期间发射车辆的整体装载状态。自助式环境通常在跨音质条件下最高,并且可以激发车辆动态振动模式。对这些自助式锻造功能的车辆响应可能导致高结构弯矩和振动环境,其可以超过结构的能力,或者是有效载荷和航空电子的车辆部件。车辆配置,突起,有效载荷公平和阶段直径的大变化可以触发不良自助式环境。空间发射系统(SLS)多体配置及其结构动态特性对加速度引起的负载和响应的负载周期设计过程提出了挑战。在2012年进行了3%的SLS刚性自助式型号的初始风洞试验,并在升压前向附件突起后面显示了高自助式环境,这有助于减少车辆结构边缘。探讨了六种自助缓解选项,以缓解高自助餐环境,包括改进的助推器鼻锥和助推器和核心的围栏/轨迹。这些研究导致了2014年进行的第二次自助式测试程序,以评估自助式缓解选项减少车辆上的自助餐环境的能力。本文将展示从测试的每个自助餐缓解选项的自助式迫使功能的比较,重点是横断函数在车辆区域内的突出功能RMS水平容易出现高自助式环境。

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