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微重力环境下轴对称贮腔类液刚耦合动力学

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岳宝增

北京理工大学理学院力学系,北京100081

北京理工大学学报
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国际标准刊号:ISSN 1001-0645
国内统一刊号:CN 11-2596

摘  要:

采用球坐标系描述球腔中的液体动力学特性,并建立一种轴对称贮腔类液刚耦合系统动力学模型.采用模态展开方法分析了微重环境下球形贮箱中的液体晃动问题,给出了球形贮箱内液体晃动速度势函数和波高函数的高斯超几何级数解析表达式.采用伽辽金变分原理推导了系统动力学模型,并进行了特征频率分析.对耦合充液系统进行了数值仿真计算,并得到系统自由度随时间的变化历程.[著者文摘]

Coupling Dynam ics of Liquid Filled Axis-Sym metric Container Under M icrogravity Environment YUE Bao—zeng (Department of Mechanics,School of Science,Beijing Institute of Technology,Beijing 100081,China) Abstract.Studies liquid--rigid coupling dynamics of contained fluid in axis--symmetric container under microgravity environment.
Journal of Beijing Institute of Technology(Natural Science Edition)

栏目信息:

工程力学

分 类 号:

V415.4

文献标识码:

A

文章编号:

1001-0645(2007)11-0941-04

相关文章:

参考文献(11篇) 耦合文献(6篇)  主题相关

[参考文献]

Liquid-Rigid Coupling Dynamics of Liquid Filled Axis-Symmetric Container Under Microgravity Environment

YUE Bao-zeng (Department of Mechanics, School of Science, Beijing Institute of Technology, Beijing 100081, China)

Abstract:

Studies liquid-rigid coupling dynamics of contained fluid in axis-symmetric container under microgravity environment. Low-gravity sloshing in a convex axisymmetrical container subjected to lateral excitation is formulated by variational principle and is solved analytically by modal analysis method. Variational principle is transformed into a frequency equation in the form of a standard eigenvalue problem by the Galerkin method, in which admissible functions for the velocity potential and the liquid surface displacement are determined analytically in terms of Gaussian hypergeometric series. Numerical calculations of the dynamic equations are carried out, and the changing time histories of the degrees of freedom of the coupling system are obtained.[著者文摘]

Key words:

microgravity; liquid-filled system; coupling dynamics; liquid sloshing

收稿日期: 2007-06-21

基金资助:

国家自然科学基金资助项目(10572022,10772026).

作者简介:

岳宝增(1962-),男,教授,博士生导师,E-mail:bzyue@bit.edu.cn.

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