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Pressure Measurements on a Mach 5 Sabot During Discard

机译:丢弃过程中对Mach 5 Sabot的压力测量

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摘要

An experimental program has been conducted in a Mach 5 airflow to obtain surface pressures in the scoop and on the underside of a sabot at different stages of the discard process. The data are needed to validate computer codes used for predicting the trajectory of the sabot during discard and to aid in the design of minimum-interference sabots. Because of wind-tunnel size constraints, the tests were carried out using a model with one sabot petal. The remaining sabot petals were modeled by using splitter plates as symmetry planes. Assessment of the data indicates that the complex flow structure between the sabot and projectile is simulated using this approach. Because of the complex shock-shock and shock-boundary-layer interactions, the pressure distributions on the sabot underside have very distinctive shapes with large maxima; if a code can locate these maxima and predict their magnitudes reasonably well, then the integrated forces and moments (which determine the sabot trajectory) should be modeled reasonably accurately. The current data should prove useful in that regard.
机译:已在5马赫气流中进行了实验程序,以在sc料过程的不同阶段获得sc和and的下表面的表面压力。需要这些数据来验证用于预测丢弃过程中sa的轨迹的计算机代码,并有助于设计最小干扰的bot。由于风洞尺寸的限制,测试使用的是带有一个木sa花瓣的模型。使用分隔板作为对称平面,对其余的sa花瓣进行建模。对数据的评估表明,使用这种方法可以模拟出木桩与弹丸之间的复杂流动结构。由于复杂的激波-冲击和激波-边界层相互作用,木桩底面上的压力分布具有非常独特的形状,具有极大的最大值。如果代码可以找到这些最大值并合理地预测其大小,则应该合理准确地对积分力和力矩(确定木bot轨迹)进行建模。在这方面,目前的数据应被证明是有用的。

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