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Aeroelastic Ground Wind Loads Analysis Tool for Launch Vehicles

机译:运载火箭的气动弹性地面风荷载分析工具

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Launch vehicles are exposed to ground winds during rollout and on the launch pad that can induce static and dynamic loads. Of particular concern are the dynamic loads caused by vortex shedding from nearly-cylindrical structures. When the frequency of vortex shedding nears that of a lowly-damped structural mode, the dynamic loads can be more than an order of magnitude greater than mean drag loads. Accurately predicting vehicle response to vortex shedding during the design and analysis cycles is difficult and typically exceeds the practical capabilities of modern computational fluid dynamics codes. Therefore, mitigating the ground wind loads risk typically requires wind-tunnel tests of dynamically-scaled models that are time consuming and expensive to conduct. In recent years, NASA has developed a ground wind loads analysis tool for launch vehicles to fill this analytical capability gap in order to provide predictions for prelaunch static and dynamic loads. This paper includes a background of the ground wind loads problem and the current state-of-the-art. It then discusses the history and significance of the analysis tool and the methodology used to develop it. Finally, results of the analysis tool are compared to wind-tunnel and full-scale data of various geometries and Reynolds numbers.
机译:发射期间,运载火箭会暴露于地面风中,并在发射台上暴露于地面,这会引起静态和动态载荷。特别令人关注的是由近圆柱结构产生的涡流引起的动态载荷。当涡旋脱落的频率接近低阻尼结构模式的频率时,动态载荷可能比平均阻力载荷大一个数量级。在设计和分析周期中准确预测车辆对涡流脱落的响应是困难的,并且通常会超出现代计算流体力学代码的实际功能。因此,要降低地面风荷载风险,通常需要对动态缩放模型进行风洞测试,这既耗时又昂贵。近年来,美国宇航局开发了一种用于运载火箭的地面风荷载分析工具,以填补这一分析能力的空白,以便为启动前的静态和动态荷载提供预测。本文介绍了地面风荷载问题的背景和当前的最新技术水平。然后讨论了分析工具的历史和意义以及开发它的方法。最后,将分析工具的结果与风洞和各种几何形状和雷诺数的满量程数据进行比较。

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