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Structural analysis of spherical pressure hull viewport for manned submersibles using biological growth method

机译:载人潜水器球形压力船体视口的生物生长分析

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摘要

Manned submersibles are important platforms for exploration and research under the oceans. One of the most important components of the manned submersible is the viewport, which develops high stresses due to the nature of its design. The basic dimensions of the viewport window and its flange are determined using ASME PVHO-1. Analysis of the viewport for given basic dimensions, shows that the corners of the low-pressure face of the viewport window and the notch regions of the flange are subjected to high stresses. Using the fillet radius method at the notch region results in stress reduction by 64%. The biological growth method helps in getting the naturally optimised shape at the corner. The use of the biological growth method for structural shape modification reduces the stress acting on the acrylic viewport by 71%. The same method applied to the flange notch region reduces its sharpness and the stress there by a considerable amount. This also helps in increasing the number of cycles of operation.
机译:载人潜水器是在海洋下进行勘探和研究的重要平台。有人驾驶潜水器最重要的组成部分之一是视口,由于其设计的性质,视口会产生高应力。视口窗口及其法兰的基本尺寸是使用ASME PVHO-1确定的。对给定基本尺寸的视口进行分析表明,视口窗口低压面的角和法兰的缺口区域承受高应力。在缺口区域使用圆角半径方法可将应力降低64%。生物生长方法有助于在角落获得自然优化的形状。使用生物生长方法进行结构形状修改可将作用在丙烯酸视口上的应力降低71%。应用于凸缘凹口区域的相同方法会显着降低其锐度和应力。这也有助于增加操作周期数。

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