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LAZY WAVE RISER DESIGN IN HIGH CURRENT AND MILD SOUR ENVIRONMENT

机译:高电流和微酸环境中的Lazyy Wave上升器设计

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This paper presents an innovative design of Lazy Wave Steel Catenary Riser (LWSCR) associated with a major deepwater development in a new frontier and in very high current. The conventional LWSCR design with distributed buoyancy is not found acceptable considering fatigue design acceptance criteria in mild sour environment. The major design requirement is to meet acceptable design life of 20-yrs considering significant damage accumulated due to Vortex-induced-vibration (VIV) and motion fatigue. Further, other development basis including flow assurance requirements and reservoir souring are critical requirements for the design of the riser system. The paper presents a very useful insight in how several qualified technologies can be leveraged to result in a workable riser design in a very aggressive execution schedule. The results from the analyses of a production LWSCR are presented in the paper.
机译:本文介绍了一种创新设计,即在新的边界和高电流下与大型深水开发相关的惰​​性波浪钢悬链式提升管(LWSCR)。考虑到轻度酸性环境下的疲劳设计验收标准,传统的具有分布式浮力的LWSCR设计无法被接受。主要的设计要求是要考虑到20年的可接受设计寿命,考虑到由于涡流诱发的振动(VIV)和运动疲劳而造成的大量累积损坏。此外,其他开发基础,包括流量保证要求和储层酸化处理,是立管系统设计的关键要求。本文就如何利用几种合格的技术在非常激进的执行计划中产生可行的冒口设计提出了非常有用的见解。本文介绍了生产LWSCR的分析结果。

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