日本造船学会論文集
Online ISSN : 1884-2070
Print ISSN : 0514-8499
ISSN-L : 0514-8499
擾乱を伴う追従力が作用する交差アーチ格子構造の動的不安定に関する研究
福地 信義岡田 公一
著者情報
ジャーナル フリー

1999 年 1999 巻 185 号 p. 319-327

詳細
抄録
The deformation mechanisms of submerged shell-like lattice structures with membrane are in principle of a non-conservative nature because the working load is the follower type as hydrostatic pressure. Dynamic behaviors of arch-lattice framework subjected to follower forces are governed by several geometric and physical factors like curvatures, boundary conditions, loading, disturbances, contributing to the overall possibility of a dynamic failure at interval of its deformation history. Also, disturbance forces, exiting in a marine environment, lead the structure to exhibit dynamic instabilities at a much earlier stage than that could be predicted by a static stability criterion.
This paper presents the governing equations for the finite deformations of shell-like lattices structures defined in a mono-clinically convected coordinate description to deal with arch-lattices deformations. And the governing equations have been developed using the method of disturbed small motions to clarify the stability problem of shell-like lattice structures. Numerical results show that the complex “peninsular shaped instability regions” are in the excitation force field for arch-lattices under given loading conditions and its stability slips suddenly over a threshold point of dynamic equilibrium from the heteronomous state to an autonomous state of self-sustained motions.
著者関連情報
© 日本船舶海洋工学会
前の記事 次の記事
feedback
Top