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A numerically efficient finite element hydroelastic analysis

机译:数值有效的有限元水弹性分析

摘要

A finite element hydroelastic analysis formulation is developed on the basis of Toupin's complementary variational principle. Emphasis is placed on the special case of an incompressible fluid model which is applicable to propellant tank hydroelastic analysis. A concise fluid inertia representation results from the assumption of incompressibility and the hydroelastic equations reduce to a simplified form associated with the structure alone. The efficiency of the incompressible hydroelastic formulation in unhanced for both fluid and structure by introduction of harmonic reduction as an alternative to Guyan reduction. The theoretical developments are implemented in the NASTRAN Program and the technique is verified and demonstrated as an efficient and accurate approach with a series of illustrative problems including the 1/8 scale space shuttle external tank.
机译:基于Toupin的互补变分原理,开发了一种有限元水弹性分析公式。重点放在不可压缩流体模型的特殊情况上,该模型适用于推进剂罐的水弹性分析。简洁的流体惯性表示法来自不可压缩性的假设,并且水弹性方程简化为与结构相关的简化形式。通过引入谐波减少作为古安减少的替代方法,不可压缩的水弹性制剂对流体和结构的效率均不提高。在NASTRAN计划中实现了理论发展,并且对该技术进行了验证和演示,证明了该技术是一种高效,准确的方法,并提出了一系列说明性问题,包括1/8比例的航天飞机外舱。

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    Coppolino R. N.;

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  • 年度 1976
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