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A novel hybridized metaheuristic technique in enhancing the diagnosis of cross-sectional dent damaged offshore platform members

机译:一种新颖的混合元启发式技术,可增强对横截面凹痕损坏的海上平台构件的诊断

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摘要

Offshore jacket platforms are widely used for oil and gas extraction as well as transportation in shallow to moderate water depth. Tubular cross-sectional elements are used to construct offshore platforms. Tubular cross sections impart higher resistance against hydrodynamic forces and have high torsional rigidity. During operation, the members can be partially or fully damaged due to lateral impacts. The lateral impacts can be due to ship collisions or through the impact of falling objects. The impact forces can weaken some members that influence the overall performance of the platform. This demonstrates an urgent need to develop a framework that can accurately forecast dent depth as well as dent angle of the affected members. This study investigates the use of an adaptive metaheuristics algorithm to provide automatic detection of denting damage in an offshore structure. The damage information includes dent depth and the dent angle. A model is developed in combination with the percentage of the dent depth of the damaged member and is used to assess the performance of the method. It demonstrates that small changes in stiffness of individual damaged bracing members are detectable from measurements of global structural motion.
机译:海上护套平台广泛用于石油和天然气开采以及浅至中等水深的运输。管状横截面元件用于构建海上平台。管状横截面具有较高的抵抗流体动力的能力,并具有较高的扭转刚度。在操作过程中,部件可能会因侧向冲击而部分或全部损坏。横向撞击可能是由于船舶碰撞或坠落物体的撞击造成的。冲击力会削弱一些影响平台整体性能的成员。这表明迫切需要开发一个可以准确预测受影响构件的凹痕深度和凹痕角度的框架。这项研究调查了自适应元启发式算法的使用,以提供对海上结构凹陷破坏的自动检测。损伤信息包括凹痕深度和凹角。结合损坏构件的凹痕深度的百分比来开发模型,并将其用于评估该方法的性能。它表明,从整体结构运动的测量中可以检测到单个损坏的支撑构件的刚度的微小变化。

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