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首页> 外文期刊>Journal of marine science and technology >Self-propulsion computations using a speed controller and a discretized propeller with dynamic overset grids
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Self-propulsion computations using a speed controller and a discretized propeller with dynamic overset grids

机译:使用速度控制器和带有动态过流栅格的离散化螺旋桨进行自推进计算

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A method that can be used to perform self-propulsion computations of surface ships is presented. The propeller is gridded as an overset object with a rotational velocity that is imposed by a speed controller, which finds the self-propulsion point when the ship reaches the target Froude number in a single transient computation. Dynamic overset grids are used to allow different dynamic groups to move independently, including the hull and appendages, the propeller, and the background (where the far-field boundary conditions are imposed). Predicted integral quantities include propeller rotational speed, propeller forces, and ship's attitude, along with the complete flow field. The fluid flow is solved by employing a single-phase level set approach to model the free surface, along with a blended k-ω/k-ε based DES model for turbulence. Three ship hulls are evaluated: the single-propeller KVLCC1 tanker appended with a rudder, the twin propeller fully appended surface combatant model DTMB 5613, and the KCS container ship without a rudder, and the results are compared with experimental data obtained at the model scale. In the case of KCS, a more complete comparison with propulsion data is performed. It is shown that direct computation of self-propelled ships is feasible, and though very resource intensive, it provides a tool for obtaining vast flow detail.
机译:提出了一种可用于执行水面舰艇自推进计算的方法。螺旋桨通过速度控制器施加的转速作为超速对象被网格化,该速度控制器会在一次瞬态计算中在船舶达到目标弗洛德数时找到自推进点。动态过冲栅格用于允许不同的动态组独立移动,包括船体和附件,螺旋桨和背景(强加了远场边界条件)。预测的积分量包括螺旋桨转速,螺旋桨力和船的姿态以及整个流场。通过采用单相水平集方法对自由表面进行建模以及基于k-ω/k-ε的混合DES湍流模型来解决流体流动问题。对三艘船的船体进行了评估:单螺旋桨的KVLCC1加油机附加了舵,双螺旋桨的附加式水面战斗员是DTMB 5613型,以及KCS集装箱船没有舵,并将结果与​​在模型规模下获得的实验数据进行了比较。 。在KCS的情况下,将与推进数据进行更完整的比较。结果表明,直接计算自走舰船是可行的,尽管非常耗费资源,但它提供了获取大量流量细节的工具。

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