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OPERATIONAL SCOUR MANAGEMENT FOR SAFE JACK-UP OPERATIONS

机译:安全进阶操作的操作搜索管理

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Scour is an imminent threat for jack-up operations in shallow waters with sandy seabed conditions, strong tidal currents and/or a harsh wave climate, such as the North Sea. Jack-up operations in scour-sensitive areas require jack-up operators to evaluate the risk of scour and to adapt a scour management strategy in order to safeguard against foundation failure. Jack-up deployments are characteristically short term operations. This can be in the range of one day (construction project jack-ups) to several months (drilling units). Often, the strategy is to monitor scour and take remedial measures if and when required.An operational scour forecast and hindcast system was developed in order to assist jack-up operators with their management of scour. The system is based on automated importing and processing of metocean data (water levels, waves and currents) from operational metocean models or measurement stations and calculating forecasts for the temporal scour development with semi-empirical relations, derived from physical model tests for various types of foundations. During an operation, the results provide the basis for a periodic assessment whether, how much and where scour protection is required and when surveys should be performed. After an operation, the hindcast results serve as calibration for the scour prediction model and as evaluation of the scour management strategy.This paper presents two case studies for which the system was applied in the southern North Sea. In the first case study, the system was used to forecast scour around unprotected spudcans. A few weeks into the drilling operation, the operator decided to apply scour protection based on the warning that the predicted scour depth was reaching a critical value. A field survey performed after the scour protection installation confirmed that the predicted scour depth had been in line with the measured scour depth.The second case study comprised a drilling operation before which scour protection had been installed. The main objective of the system was to predict the stability of the scour protection and provide recommendations for scour protection maintenance and scheduling of scour inspection surveys. The field survey performed after the main storm event revealed that the predicted scour depth had been overestimated. A hindcast was performed to calibrate the scour model for future operations.It was concluded that the improved scour forecast system is an important milestone for scour management and contributes to improved safety in future jack-up operations.
机译:对于在沙质海床条件,强潮流和/或恶劣海浪气候(例如北海)的浅水区,自升作业将面临自升作业的迫在眉睫的威胁。在对冲刷敏感的地区进行自升式作业需要自升式作业人员评估冲刷的风险并调整冲刷管理策略,以防止地基破坏。自升式部署通常是短期操作。这可以在一天(建筑项目自升)到几个月(钻探单元)的范围内。通常,该策略是监视冲刷并在需要时采取补救措施。开发了运行冲刷预测和后播系统,以帮助自升式操作员进行冲刷管理。该系统基于从运行中的海洋模型或测量站自动导入和处理海洋数据(水位,波浪和水流)并基于各种类型的物理模型测试得出的具有半经验关系的时间冲刷发展的预测计算。基础。在手术过程中,结果为定期评估是否需要冲刷保护,需要多少,在何处以及何时进行调查提供了基础。手术后,后预报结果可作为冲刷预测模型的标定和冲刷管理策略的评估。本文介绍了两个在北海南部应用该系统的案例研究。在第一个案例研究中,该系统用于预测未受保护的飞钉周围的冲刷情况。在钻井作业几周后,操作员决定根据预测的冲刷深度已达到临界值的警告来应用冲刷保护。在冲刷保护装置安装后进行的现场调查确认预测的冲刷深度与测得的冲刷深度一致。第二个案例研究包括在安装冲刷保护装置之前进行的钻井作业。该系统的主要目的是预测冲刷保护装置的稳定性,并为冲刷保护装置的维护和冲刷检查调查的安排提供建议。在主要暴风雨事件发生后进行的实地调查显示,预测的冲刷深度被高估了。进行了事后预测,以校准未来运行的冲刷模型。结论是,改进的冲刷预报系统是冲刷管理的重要里程碑,并有助于提高未来自升式起重机的安全性。

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