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DEEPWATER SPAR STEEL CATENARY RISER MONITORING STRATEGY

机译:深水SPAR钢制立管监控策略

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摘要

Steel catenary risers (SCRs) in deepwater environment exhibit complex dynamic dynamic response governed by various factors such as environmental conditions, vessel motions, soil-structure interaction and material degradation. Uncertainties in the SCR design exist in the design data, analysis methodologies, fabrication, and hence a conservative approach has been adopted to overcome these shortfalls. Recent advances in monitoring systems installed on SCRs provide operator the assurance of the integrity of the SCRs in service, verify the SCR design, and enhance basic understanding of the SCR response. This paper outlines a strategy for monitoring the SCRs to characterize the response due to vessel motions, vortex induced vibrations (VIV), and soil-structure interaction. A detailed example of real-time SCR monitoring system with optimized array of motion and strain measurements is presented. The methodology for sensor selection and optimization is based on linear regression analysis. The measured data processing methods include shape matching the response amplitudes with correlating response frequencies. The principles and methods of measured data interpretation to capture global response shape due to wave and vessel motions induced and VIV are presented. The pipe-soil interaction such as soil stiffness, suction, softening and trenching effects characterized using the strain measurements in the touch down zone are presented. In addition, the methods to calibrate the individual vertical, lateral and axial models for pipe-soil interaction are presented.
机译:深水环境中的钢悬链立管(SCR)表现出复杂的动态动力响应,其受多种因素影响,例如环境条件,船舶运动,土壤与结构的相互作用以及材料的降解。 SCR设计的不确定性存在于设计数据,分析方法,制造过程中,因此采用了保守的方法来克服这些不足。 SCR上安装的监视系统的最新进展为操作员提供了服务中SCR完整性的保证,验证了SCR设计并增强了对SCR响应的基本了解。本文概述了一种监测SCR的策略,以表征由于船舶运动,涡激振动(VIV)和土壤-结构相互作用而引起的响应。给出了具有优化的运动和应变测量阵列的实时SCR监测系统的详细示例。传感器选择和优化的方法基于线性回归分析。所测量的数据处理方法包括使响应幅度与相关响应频率匹配的形状。介绍了测量数据解释的原理和方法,以捕获由于波浪和血管运动和VIV引起的整体响应形状。提出了在土层区域使用应变测量表征的管土相互作用,如土的刚度,吸力,软化和开沟效应。另外,提出了用于校准竖向,横向和轴向模型以进行管-土相互作用的方法。

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