首页|期刊导航|中国舰船研究|基于Flow-3D的液舱晃荡载荷流固耦合映射方法

基于Flow-3D的液舱晃荡载荷流固耦合映射方法OA

Fluid-structure interaction mapping method for sloshing loads in liquid cargo tanks based on Flow-3D

中文摘要英文摘要

[目的]液舱晃荡载荷的传递是液货船流固耦合(FSI)仿真的关键,目前尚未形成较为通用的映射方法和独立的工具,为此,提出一种流体载荷快速向结构模型映射的方法.[方法]通过对晃荡载荷预报软件和结构强度计算软件的分析,明确这 2 种软件的数据传递格式,提出 3 种兼顾效率和精度的晃荡载荷流固耦合映射方法,并研发独立的工具软件,形成一套完整的解决方案.[结果]实例验证表明,研发的工具能够高精度地实现载荷传递,在结构模型上能正确反映晃荡载荷演化的趋势及细节特征,3 种映射方法的数据传递误差均小于 5%.[结论]研发的映射工具可以作为通用的晃荡载荷流固耦合工具应用于液货船多物理场耦合分析及结构优化等场景中,可以大大提高工程人员的工作效率.

[Objective]The accurate transfer and mapping of sloshing loads in liquid cargo tanks are critical to fluid-structure interaction(FSI)simulations for liquid cargo vessels.At present,the engineering field lacks standardized,general-purpose load mapping methods and dedicated standalone tools,which hinders efficient data exchange and integrated analysis between mainstream sloshing load prediction software and structural fi-nite element analysis software in the shipbuilding industry.This technical bottleneck not only reduces the effi-ciency of liquid tank FSI simulations but also constrains the accuracy and reliability of structural strength as-sessment and optimization design for liquid cargo vessels.To address this key technical problem,this study aims to overcome the technical barriers in data transfer between sloshing load simulations and structural analy-sis,and to develop a generalized and efficient load mapping solution.[Methods]Based on an in-depth com-parative analysis of the data interface characteristics,mesh formats,and load output schemes of Flow-3D(a professional software for sloshing load prediction)and Patran(a structural analysis software),this study estab-lishes a standardized data exchange framework between fluid simulation results and structural model inputs.On this framework,three sloshing load FSI mapping methods are proposed:the nearest single-point mapping algorithm,the multi-point averaging mapping algorithm,and the shape function-based mapping algorithm,which balance computational efficiency and numerical accuracy.An independent load mapping software tool is developed using C++.The tool integrates five core functional modules:load mapping parameter input,struc-tural model import,sloshing load data import,mapping algorithm execution,and mapping result output,en-abling a complete automated workflow from fluid load prediction to structural load application.[Results]A 45 m twin-hull liquid cargo tank is adopted as a validation case for a real-ship example test.The results show that the developed mapping tool can accurately transfer sloshing loads from the fluid model to the structural model,faithfully reproducing the time-dependent evolution and spatial distribution characteristics of sloshing loads acting on tank walls and internal structures.Quantitative error analysis indicates that the relative data transfer errors of all three mapping algorithms are controlled within 5%,meeting the engineering accuracy re-quirements for structural strength assessment.In terms of computational efficiency,the nearest single-point mapping takes 5 s,multi-point averaging mapping takes 6 s,and shape function-based mapping takes 14 s,which satisfy the application requirements for various operating conditions and model scales.[Conclusion]The generalized FSI mapping tool and methodological framework developed in this study fill a critical gap in dedi-cated tools for sloshing load mapping in liquid cargo tanks.The proposed approach can be widely applied to multi-physics coupling simulations,structural strength optimization,and safety performance evaluation of liq-uid cargo vessels.The tool features standalone operability,strong compatibility,and user-friendly implementa-tion,effectively reducing manual data processing and significantly improving the efficiency of liquid tank FSI simulations.It provides robust technical support and an efficient solution for the design and research of liquid cargo vessels.

程成;陆芝庆;郭伟;陈康;刘德丰;黄翀

中国船舶科学研究中心,江苏 无锡 214082中国船舶科学研究中心,江苏 无锡 214082中国船舶科学研究中心,江苏 无锡 214082中国船舶科学研究中心,江苏 无锡 214082中国船舶科学研究中心,江苏 无锡 214082中国船舶科学研究中心,江苏 无锡 214082

交通工程

液货舱晃荡载荷流固耦合映射算法形函数

liquid cargo tanksloshing loadfluid-structure interaction(FSI)mapping algorithmshape function

《中国舰船研究》 2026 (3)

26-35,10

10.19693/j.issn.1673-3185.04457

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