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弹性结构与晃动液体耦合系统的动力特性分析
周明芳1,2,张延庆2
(1.中国石油大学储运与建筑工程学院,山东东营257061;2.北京工业大学建筑工程学院,北京100022)
摘要:
基于弹性波传播理论,构造液体晃动的等效弹性体模型,将液体晃动问题D结为弹性体动力问题,建立位移-压力格式的流固耦合方程,采用静态缩聚技术求解流固耦合特征值问题。在此基础上,推导地误条件r的流固耦合 系统有限元模型。对储液容器的特征值问题和动态响应问题进行丫实例分析和计算,算例结果验证了方法的止确 性与有效性。
关键词:  储液容器  流间耦合  动力特性  液体晃动  有限元法
DOI:
分类号:
基金项目:
Dynamic characteristic analysis of elastic fluid-filled tank considering liquid sloshing
ZHOU Ming-fang1,2,ZHANG Yan-qing2
(1.College of Transport & Storage and Civil Engineering in China University of Petroleum,Dongying 257061, Chim;2. College of Architecture and Civil Engineering,Beijing University of Technology,Beijing 100022, China)
Abstract:
Based on elastic wave propagation theory, the equivalent elastic body for liquid sloshing was obtained and the liquid sloshing can be formulated as a dynamic question for elastic body. The 3-D liquid-filled tank was considered as a fluid-structures interaction system that consists of the ideal fluid with free surface and the linear,elastic solid with thin thickness, and the coupling equation based on displacement (structure) -pressure (fluid with free surface) format was established. The static condensation method was used for eigenvalue problems of liquid sloshing. Taking into account earthquake effect leads to additional load to the coupling equations, a finite element model of liquid-filled tank was set up. The eigenvalue problem and dynamic response of a liquid-filled tank were studied using the model. A numerical simulation of a liquid-filled tank was carried out to confirm the validity and effectiveness of the method
Key words:  liquid-filled tank  fluid-structure interaction  dynamic characteristic  liquid sloshing  finite element method
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