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Review of Steel Lazy Wave Riser Concepts for the North Sea

机译:北海钢制懒人冒口概念回顾

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A steel riser has benefits over a flexible riser in terms of pressure rating and cost. A steel riser in lazy wave configuration (steel lazy wave riser (SLWR)) is often considered as a good alternative solution for harsh environments where large floater excursions take place. The SLWR configuration is achieved by introducing buoyancy modules into a steel catenary riser (SCR). The buoyancy modules act as a damper and isolate the floater motions from the critical touchdown area. Hence, the SLWR generally has better overall performance than an SCR configuration. This paper attempts to analyze the correlation between the geometric shapes of the SLWR configuration with its capability to absorb the dynamic loadings. For deepwater cases, the behavior of the bottom part of the riser is correlated with the velocity experiences at the riser's hang-off location. Hence, the riser's performance is analyzed by comparing the velocity at the riser's hang-off with the velocity at the sag, hog, and near touchdown. The geometric shape of an SLWR is represented by its arch height, which is the vertical distance between the lowest point at the sag and the highest point at the hog bend of a riser. The results show that there is a correlation between the arch height of an SLWR with the riser's strength and wave-induced fatigue performance. SLWR configurations with higher arch generally have greater capability to absorb the dynamic loadings, as indicated by the lower velocities along the riser, which leads to lower stress utilizations and lower fatigue damage.
机译:在压力等级和成本方面,钢制立管比挠性立管具有更多优势。通常,在发生大型浮子漂移的恶劣环境中,采用惰性波配置的钢立管(钢懒波立管(SLWR))是一个很好的替代解决方案。 SLWR配置是通过将浮力模块引入钢悬链立管(SCR)来实现的。浮力模块起到阻尼器的作用,将浮子的运动与临界接地区域隔离开。因此,SLWR通常比SCR配置具有更好的总体性能。本文试图分析SLWR配置的几何形状与其吸收动态载荷的能力之间的相关性。对于深水情况,立管底部的行为与立管悬挂位置处的速度体验相关。因此,通过比较立管悬挂时的速度与下垂,生猪和接近触地时的速度来分析立管的性能。 SLWR的几何形状由其拱高表示,拱高是垂线最低点与立管弯头处最高点之间的垂直距离。结果表明,SLWR的拱高与立管的强度和波浪引起的疲劳性能之间存在相关性。具有较高拱度的SLWR构型通常具有更大的吸收动态载荷的能力,如沿立管的较低速度所表明的那样,这导致较低的应力利用率和较低的疲劳损伤。

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