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首页> 外文期刊>Journal of Fluids and Structures >Computation of hydrodynamic mass and damping coefficients for a cavitating marine propeller flow using a panel method
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Computation of hydrodynamic mass and damping coefficients for a cavitating marine propeller flow using a panel method

机译:使用面板法计算空化螺旋桨流的水动力质量和阻尼系数

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摘要

The present paper deals with the numerical calculation of hydrodynamic mass and damping coefficients under consideration of unsteady sheet cavitation on marine propeller flows. In the first part of the paper, the mathematical and numerical background behind the numerical method is introduced. The numerical calculations carried out in this work are based on a low-order panel method. Panel methods belong to the class of collocation techniques and are applied to obtain a numerical solution of a potential flow based system of boundary integral equations. They are suitable for the present application because of their short computation time which makes them applicable in the design process of marine propellers. Additionally, two different approaches for the determination of hydrodynamic masses and damping are introduced in this work. The hydrodynamic masses and damping are important in studies of the ship motion in seaway and in the analysis of vibrations of a vessel and its appendages. The developed approaches are applied on a propeller flow in heave motion. Hereby, the calculations are performed for a non-rotating and rotating propeller under non-cavitating and cavitating conditions. The results obtained from the simulations are discussed in detail and an outlook is given.
机译:考虑船舶螺旋桨非定常空化现象,本文对流体动力质量和阻尼系数进行了数值计算。在本文的第一部分,介绍了数值方法背后的数学和数值背景。在这项工作中进行的数值计算是基于低阶面板方法。面板方法属于并置技术的类别,用于获得基于势流的边界积分方程系统的数值解。它们的计算时间短,因此适用于本应用程序,这使其可应用于船舶螺旋桨的设计过程。此外,这项工作引入了两种不同的方法来确定流体动力质量和阻尼。流体动力质量和阻尼对于研究船舶在海道中的运动以及分析船舶及其附属物的振动非常重要。所开发的方法应用于升沉运动中的螺旋桨流。因此,在非空化和空化条件下对非旋转和旋转的螺旋桨进行计算。从模拟获得的结果进行了详细讨论,并给出了展望。

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