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System-based prediction of maneuvering performance of twin-propeller and twin-rudder ship using a modular mathematical model

机译:使用模块化数学模型的双向螺旋桨和双舵船操纵性能的基于系统的预测

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The turning circle and zigzag maneuvering performance of surface combatant, DTMB 5415 have been investigated by using system-based method. Unsteady Reynolds averaged Navier Stokes (URANS) approach is utilized to estimate hydrodynamic derivatives and hull-propeller-rudder interactions. DTMB 5415 is a twin-propeller / twin-rudder ship and there are some studies on the derivation of maneuvering coefficients in the literature but none of them took into account the propeller and rudder forces. In this study, static drift, pure yaw, combined yaw and drift, self-propulsion and rudder tests of DTMB 5415 hull have been simulated in calm and deep water condition. Bare hull PMM simulations were carried out for a fixed Froude number of Fr = 0.28, while the simulations related to rudder and propeller were performed at Fr = 0.25. Computational results were used by MMG (Maneuvering Modeling Group) model to estimate the maneuvering performance of the ship. Hydrodynamic derivatives from numerically generated forces and moment data were obtained by single-run and multiple-run methods. The results from both methods were tested in an in-house maneuvering simulation code (MANSIM) that solves for ship motions and they were compared with computed turning circle and zigzag maneuvering performances. Although it is known a priori that the multiple-run method would give better solution in overall, it was found that the single-run method can be a good alternative in some specific cases. For the zigzag and turning circle tests, the results from single-run method were found satisfactory when correct PMM test conditions were adopted.
机译:表面战斗机的转动圆和锯齿形操作性能,通过使用基于系统的方法研究了DTMB 5415。不稳定的Reynolds平均Navier Stokes(urans)方法用于估计流体动力衍生物和船体推进器 - 舵相互作用。 DTMB 5415是一艘双螺旋桨/双舵船,有一些研究文献中的机动系数的推导,但他们都没有考虑到螺旋桨和舵势。在这项研究中,在平静和深水条件下模拟了DTMB 5415船体的静漂移,纯偏航,组合的偏航,自推进和方向舵试验。裸壳PMM模拟用于固定的FRoude的FR = 0.28,而与舵和螺旋桨相关的模拟在FR = 0.25中进行。 MMG(机动建模组)模型使用计算结果来估计船舶的操纵性能。通过单次和多运行方法获得来自数值产生的力和时刻数据的流体动力学衍生物。两种方法的结果在内部机动模拟代码(Mansim)中进行了解决,该仿真码(Mansim)解决了船舶运动,它们与计算的转动圈和曲折机动性能进行了比较。虽然已知多运行方法将在整体上提供更好的解决方案,但发现单次方法可以是一些特定情况下的替代方案。对于锯齿形和转动圆圈测试,在采用正确的PMM测试条件时发现了单次方法的结果令人满意。

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