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TITANIUM RISER CONFIGURATIONS

机译:钛上升器配置

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摘要

The present paper addresses mechanical design aspects for titanium riser configurations. Three main types of riser systems are considered: 1. Vertical top-tensioned risers suspended from a TLP 2. Catenary risers suspended from a TLP 3. Pliant-wave risers suspended from a Semi-submersible For each configuration, characteristic response properties related to bending moment and axial force diagrams are presented. Critical sections for each riser system are identified. For the vertical top-tensioned riser, design of a bending stiffener located at the seabed is briefly addressed. Capacity formulations and the relative importance of the following mechanical limit states are addressed: 1. Yielding 2. Local buckling 3. Fatigue Differences between parameters influencing the various limit states for titanium respectively steel are highlighted. The local buckling limit state is subsequently focused upon in some more detail in relation to loads due to combined external overpressure and bending.
机译:本文讨论了钛冒口配置的机械设计方面。考虑了三种主要类型的立管系统:1.从TLP悬吊的垂直顶部张紧立管2.从TLP悬吊的悬链立管3.从半潜式悬吊的柔波立管对于每种配置,与弯曲相关的特征响应特性给出了力矩和轴向力图。确定每个立管系统的关键部分。对于垂直的顶部张紧立管,简要介绍了位于海床的弯曲加劲肋的设计。解决了以下机械极限状态的容量公式和相对重要性:1.屈服2.局部屈曲3.疲劳突出显示了影响钛和钢的各种极限状态的参数之间的差异。随后,由于外部过压和弯曲的综合作用,局部屈曲极限状态将更详细地关注于载荷。

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