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Hydrodynamic forces and moment acting on a submersible surface ship in vertical motion

机译:在垂直运动中作用于潜水表面的水动力和力矩

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The submersible surface ship (SSS) is a ship that can avoid rough seas by going underwater. In order to submerge the SSS uses wings producing downward lift. The SSS, in submerged condition, keeps residual buoyancy for its safety. A prototype of SSS of which configuration is a hull, a pair of main wings and a pair of horizontal tail wings is designed and its model ship for tank tests is made. The circular motion test was carried out and hydrodynamic forces and moment in vertical motion were measured. The effect of submerged depth on the resistance and wings performances, and the effect of attack angle and pitch rate on the longitudinal and vertical forces and pitch moment acting on the SSS model are clarified. A method to estimate linear hydrodynamic derivatives is applied to the SSS model and compared with the results of tank test data analysis. The validity of the method and test data together with its effective utilization is discussed.
机译:潜水水面船(SSS)是可以通过进入水下避开汹涌海浪的船。为了潜入水中,SSS使用机翼产生向下的升力。 SSS在浸没状态下会保持剩余浮力以确保其安全。设计了配置为船体,一对主翼和一对水平尾翼的SSS原型,并制作了用于坦克试验的模型船。进行了圆周运动测试,并测量了流体动力和垂直运动中的力矩。弄清了水下深度对阻力和机翼性能的影响,以及攻角和俯仰率对作用在SSS模型上的纵向和纵向力以及俯仰力矩的影响。一种估算线性流体动力导数的方法被应用于SSS模型,并与储罐测试数据分析的结果进行了比较。讨论了该方法和测试数据的有效性及其有效利用。

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