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Wave loads and flexible fluid-structure interactions: current developments and future directions

机译:波浪载荷和灵活的流固耦合:当前的发展和未来的方向

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摘要

The function of a Classification Society includes the setting of standards for the design, construction and maintenance of ship hulls to ensure adequate safety throughout their service life. Fundamental to this is the determination of the design loads to support the prescriptive Rule requirements and for application in direct calculations. The current design philosophy for the prediction of motions and wave-induced loads is driven by first-principles calculation procedures based on well-proven applications such as ship motion prediction programs. In recent years, the software and computer technology available to predict design loads has improved dramatically. With the stepwise increase in ship size and complexity it is necessary to utilise the latest technologies to assess the design loads on new ship designs. This paper discusses some of the recent experiences of Lloyd's Register with regard to the current state of the art in the assessment of design loads and structural responses by reviewing recent work on the effects of flexible fluid-structure interaction for hull girder and also for sloshing applications. The paper also discusses the Lloyd's Register strategic research programme on hydrodynamics, involving the use of state-of-the-art technologies for the solution of ship dynamic response problems.
机译:船级社的职能包括为船体的设计,建造和维护制定标准,以确保船体在整个使用寿命中具有足够的安全性。对此的基础是确定设计载荷以支持规范性规则要求并应用于直接计算。基于原理的计算程序(例如船舶运动预测程序)基于第一手的计算程序来驱动当前的运动和波浪感应载荷预测设计理念。近年来,可用于预测设计负荷的软件和计算机技术已经得到了极大的改进。随着船舶尺寸和复杂性的逐步增加,有必要利用最新技术来评估新船设计的设计负荷。本文通过回顾有关船体大梁以及晃荡应用的柔性流固耦合效应的最新工作,讨论了劳埃德船级社在设计载荷和结构响应评估方面的最新经验。 。本文还讨论了劳埃德船级社关于水动力学的战略研究计划,其中涉及使用最新技术来解决船舶动力响应问题。

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