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首页> 外文期刊>Oceanographic Literature Review >A comparative investigation of fixed and free-running CFD self-propulsion models on a waterjet-propelled trimaran
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A comparative investigation of fixed and free-running CFD self-propulsion models on a waterjet-propelled trimaran

机译:固定和自由运行的CFD自推进模型在水射流 - 推进剪裁的比较调查

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摘要

The numerical method for self-propulsion (SP) point prediction is an essential part of ship hydrodynamics. However, comprehensive investigations on different CFD SP model characteristics are rare, especially for the high-performance waterjet-propelled trimarans. This paper proposes four types of overset mesh-based CFD SP numerical models on a waterjet-propelled trimaran model: two PID-controlled free-running SP models with/without a moving background and two surge-fixed SP models with/without the propulsor PID controller. The URANS CFD simulations are conducted by following the Verification and Validation (V&V) procedure to investigate the four SP models' characteristics. The four computed model SP points agree well with the experimental result, and both the finest grid relative errors are within 1.5%. A comprehensive comparison of the consumed computing resources, surge freedom, control strategy, simulation scheme, V&V result, simulated flow field, simulation accuracy, and calculation efficiency of the four SP models are analyzed. Both the PID-controlled free-running SP model with a moving background and the PID-controlled surge-fixed SP model show advantages in terms of computing resource consumption, propulsor control strategy, accuracy, and efficiency. In particular, compared with the conventional fixed SP model, the computational efficiency could be promoted up to 150%, and the time consumption could decrease up to 60%. Furthermore, the PID-controlled free-running CFD model with moving background shows its advantages and potential in directly simulating the ship's real-time motion in various complex environments.
机译:自推进(SP)点预测的数值方法是船舶流体动力学的重要组成部分。但是,对不同CFD SP模型特性的全面调查罕见,特别是对于高性能的水射流推进剪裁。本文提出了一种在水射流推进的Trimaran模型上提供了四种类型的超额网格CFD数值模型:两种PID控制自由运行的SP型号,带有/没有移动背景和两个带有/没有推进式PID的SP型号控制器。 urans CFD模拟是通过遵循验证和验证(V&V)程序来调查四个SP模型的特征。四个计算的模型SP点与实验结果很好,并且最好的网格相对误差都在1.5%范围内。分析了消耗的计算资源,浪涌自由,控制策略,仿真方案,V&V结果,模拟流场,仿真精度和四个SP模型的计算效率的全面比较。 PID受控自由运行的SP模型与移动背景和PID控制的浪涌固定SP模型在计算资源消耗,推进器控制策略,准确性和效率方面表现出优势。特别是,与传统的固定SP模型相比,计算效率可升级至150%,而且时间消耗可能会降低至60%。此外,具有移动背景的PID受控自由运行的CFD模型显示其直接模拟各种复杂环境中的船舶的实时运动的优点和潜力。

著录项

  • 来源
    《Oceanographic Literature Review》 |2021年第7期|1643-1643|共1页
  • 作者

    L. Zhang; Y. Wei; Y. Deng;

  • 作者单位

    Department of Ocean Engineering Texas A&M University College Station 77843 United States;

    Department of Ocean Engineering Texas A&M University College Station 77843 United States;

    Department of Ocean Engineering Texas A&M University College Station 77843 United States;

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  • 正文语种 eng
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