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Inertial dynamics measurement and structural configuration variation for hydrodynamic stability evaluation of a towed body

机译:惯性动力学测量和结构形态变化,以评估拖曳体的水动力稳定性

摘要

A typical inventive device is self-contained and is designed for adjunctive placement at the unconnected end of a towed body in order to test dynamic motions of the towed body. The inventive device includes an IMU, a computer, wired/wireless communication electronics, a fluid-dynamically shaped member, and a cylindrical housing (which encloses the IMU, the computer, and the communication electronics). The housing is connected to the towed body aft of the towed body, and the shaped member is connected to the housing aft of the housing. Data is acquired that is indicative of the inertial dynamics of the towed body while in motion through a fluidic medium. Differently shaped members can be independently connected to the housing at different times, each influencing in its own way the inertial dynamics of the towed body and yielding its own set of data. Comparisons can thus be drawn between/among differently shaped members.
机译:典型的本发明的设备是独立的,并且被设计用于辅助放置在被牵引物体的未连接端,以便测试被牵引物体的动态运动。本发明的设备包括IMU,计算机,有线/无线通信电子设备,流体动力学成形的构件以及圆柱形壳体(其包围IMU,计算机和通信电子设备)。壳体连接到拖曳主体的拖曳主体的后部,并且成形构件连接到壳体拖曳的主体的壳体。获取指示在通过流体介质运动时被牵引物体的惯性动力学的数据。不同形状的构件可以在不同的时间独立地连接到壳体,每个构件以其自己的方式影响被牵引物体的惯性动力学并产生自己的数据集。因此可以在不同形状的构件之间/之间进行比较。

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