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Non-linear buckling analysis of imperfect thin spherical pressure hull for manned submersible

机译:载人潜水器不完全薄球形压力壳的非线性屈曲分析

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Thin spherical pressure hulls are used as a human occupancy in deep water applications. DNV and other standards specify the imperfection allowed for pressure hulls. Numerical analyses are carried out to find the buckling pressure for both perfect and imperfect thin spherical pressure hulls, considering the geometric and material non-linearities. It is observed that there is a huge variation in the elastic and inelastic buckling pressure in perfect spherical pressure hulls. Moreover, if the manufacturing imperfections are considered in the inelastic numerical analysis, still there is a reduction in the buckling pressure. Design criteria, for deep water pressure hulls, is that both buckling pressure and yield pressure must be greater than the design pressure. In the elastic analysis, ift/D?>?0.006 buckling pressure is always greater than the yield pressure whereas in the inelastic analysis, the buckling pressure is falling below the yield pressure for allt/Dratios. Hence, inelastic numerical analysis with manufacturing imperfection has to considered in the design of deep water spherical pressure hulls of manned submersibles.
机译:薄的球形耐压船体在深水应用中被用作人类住所。 DNV和其他标准规定了耐压船体的缺陷。考虑到几何和材料非线性,进行了数值分析,以找到完美和不完美的薄球形耐压船体的屈曲压力。可以看出,在理想的球形耐压船体中,弹性和非弹性屈曲压力有很大的变化。此外,如果在非弹性数值分析中考虑到制造缺陷,则屈曲压力仍会降低。对于深水压力船体,设计标准是屈曲压力和屈服压力都必须大于设计压力。在弹性分析中,ift /D≥0.006的屈曲压力总是大于屈服压力,而在非弹性分析中,屈曲压力低于allt / Dratios的屈服压力。因此,在载人潜水器的深水球形压力壳体的设计中必须考虑具有制造缺陷的非弹性数值分析。

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