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Hydrodynamic Design of Integrated Bulbous Bow/Sonar Dome for Naval Ships

机译:舰船集成球茎/声纳穹顶的流体力学设计

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摘要

Recently, the idea of bulbous bow has been extended from the commercial ships to the design of an integrated bow that houses a sonar dome for naval ships. In the present study, a design method for a particular set of requirements consisting of a narrow range of input parameters is presented. The method uses an approximate linear theory with sheltering effect for resistance estimation and pressure distribution, and correlation with statistical analysis from the existing literature and the tank-test results available in the public domain. Though the optimisation of design parameters has been done for the design speed, but the resistance performance over the entire speed range has been incorporated in the design. The bulb behaviour has been discussed using the principle of minimisation of resistance and analysis of flow pattern over the bulb and near the sonar dome. It also explores the possible benefits arising out of new design from the production, acoustic, and hydrodynamic point of view. The results of this study are presented in the form of design parameters (for the bulbous bow) related to the main hull parameters for a set of input data in a narrow range. Finally, the method has been used to design the bulbous bow for a surface combatant vessel.
机译:最近,球形船首的概念已从商用船扩展到集成船首的设计,该船首装有用于海军舰船的声纳圆顶。在本研究中,提出了一种由一组狭窄的输入参数组成的针对特定需求集合的设计方法。该方法使用具有掩护作用的近似线性理论进行阻力估算和压力分布,并与现有文献中的统计分析和公共领域的油罐测试结果进行关联。尽管已经针对设计速度对设计参数进行了优化,但是在整个速度范围内的电阻性能已纳入设计中。已经使用最小化阻力的原理讨论了灯泡的行为,并分析了灯泡上方和声纳顶部附近的流型。它还从生产,声学和流体动力学的角度探讨了新设计可能带来的好处。这项研究的结果以与小船体参数有关的设计参数的形式(对于球形船首)呈现,适用于狭窄范围内的一组输入数据。最后,该方法已用于设计水面作战舰船的球根弓。

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