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Design of Submarine Pressure Hulls under External Hydrostatic Pressure

机译:外部静水压力下的潜艇压力壳设计

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The paper presents an investigation into various methods of calculating the theoretical collapse loads for a pressure vessel, under uniform external hydrostatic pressure; based on different design codes. The design codes used for the investigation were BS 5500, for vessels under external pressure and also, the design charts of Ross of the University of Portsmouth. It is the opinion of the present authors that the current design methodology, namely BS 5500 was difficult to use and gave inaccurate collapse pressures for some large-scale pressure vessels. Moreover, BS 5500 appeared to be too pessimistic for one mode of failure and too optimistic for another mode of failure.For the present study, two full-scale 'theoretical' pressure vessels were used and the fore mentioned methodologies applied in its design to see if there were any similarities that each method may have had.From the results obtained, it became apparent that some methodologies were more accurate than others, depending on the mode of collapse. Moreover, it also became apparent that some of the methods themselves were outdated, user-unfriendly and in some cases, may have even been dangerous.
机译:本文对在均匀外部静水压力下计算压力容器理论坍塌载荷的各种方法进行了研究。基于不同的设计规范。用于研究的设计规范是BS 5500,适用于外部压力下的容器,还有朴次茅斯大学Ross的设计图表。本作者认为,当前的设计方法(即BS 5500)难以使用,并且对于某些大型压力容器而言,其塌陷压力不准确。此外,BS 5500对于一种故障模式似乎过于悲观,而对于另一种故障模式则过于乐观。 对于本研究,使用了两个满量程的“理论”压力容器,并在其设计中应用了前面提到的方法,以查看每种方法是否存在任何相似之处。 从获得的结果来看,很明显,某些方法比其他方法更准确,具体取决于崩溃的方式。而且,很明显,某些方法本身已经过时,用户不友好,在某些情况下甚至可能是危险的。

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