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Isolating Added Mass Load Components of CPAS Main Clusters

机译:隔离CPAS主集群的增加的质量负载分量

摘要

The current simulation for the Capsule Parachute Assembly System (CPAS) lacks fidelity in representing added mass for the 116 ft Do ringsail Main parachute. The availability of 3-D models of inflating Main canopies allowed for better estimation the enclosed air volume as a function of time. This was combined with trajectory state information to estimate the components making up measured axial loads. A proof-of-concept for an alternate simulation algorithm was developed based on enclosed volume as the primary independent variable rather than drag area growth. Databases of volume growth and parachute drag area vs. volume were developed for several flight tests. Other state information was read directly from test data, rather than numerically propagated. The resulting simulated peak loads were close in timing and magnitude to the measured loads data. However, results are very sensitive to data curve fitting and may not be suitable for Monte Carlo simulations. It was assumed that apparent mass was either negligible or a small fraction of enclosed mass, with little difference in results.
机译:胶囊降落伞组装系统(CPAS)的当前模拟在表示116英尺Do Ringail主降落伞的附加质量方面缺乏保真度。可用的3D充气主篷模型可以更好地估计随时间变化的封闭空气量。这与轨迹状态信息相结合,以估计组成测量轴向载荷的组件。基于封闭的体积作为主要自变量而不是阻力区域的增长,开发了一种替代仿真算法的概念验证。开发了体积增长和降落伞阻力面积与体积之比的数据库,用于多个飞行测试。其他状态信息直接从测试数据中读取,而不是通过数字传播。所得的模拟峰值负载在时间和幅度上均与测得的负载数据接近。但是,结果对数据曲线拟合非常敏感,可能不适用于蒙特卡洛模拟。假定表观质量可以忽略不计或封闭质量的一小部分,结果差异很小。

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    Ray Eric S.;

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  • 年度 2017
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