Iceberg Drift Simulations Using Inferred, Measured, and Ocean Model Currents

IF 0.9 4区 工程技术 Q4 ENGINEERING, CIVIL
I. Turnbull, T. King, F. Ralph
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引用次数: 0

Abstract

An iceberg drift model was developed for offshore oil and gas operations. Increasing forecasting accuracy is critical for making appropriate downtime decisions. Three sources of ocean current data were used to run test simulations of the model: estimates from observed iceberg drift and wind, measurements from a drifting buoy, and a three-dimensional (3D) ocean model. The average simulated iceberg position errors at 24 hours were 12% smaller for the estimated current drift simulations compared with the 3D modelled current simulations. The 17-hour iceberg position errors were 21% smaller for the buoy current drift simulation compared with the 3D modelled current simulation.
冰山漂移模拟使用推断,测量,和海洋模型洋流
为海上石油和天然气作业开发了一个冰山漂移模型。提高预测准确性对于做出适当的停机决策至关重要。该模型的测试模拟使用了三种洋流数据来源:观测到的冰山漂移和风的估计值、漂移浮标的测量值和三维海洋模型。与3D建模的电流模拟相比,估计的电流漂移模拟在24小时内的平均模拟冰山位置误差小12%。与3D建模的海流模拟相比,浮标海流漂移模拟的17小时冰山位置误差小21%。
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来源期刊
International Journal of Offshore and Polar Engineering
International Journal of Offshore and Polar Engineering ENGINEERING, CIVIL-ENGINEERING, OCEAN
CiteScore
2.00
自引率
0.00%
发文量
44
审稿时长
>12 weeks
期刊介绍: The primary aim of the IJOPE is to serve engineers and researchers worldwide by disseminating technical information of permanent interest in the fields of offshore, ocean, polar energy/resources and materials engineering. The IJOPE is the principal periodical of The International Society of Offshore and Polar Engineers (ISOPE), which is very active in the dissemination of technical information and organization of symposia and conferences in these fields throughout the world. Theoretical, experimental and engineering research papers are welcome. Brief reports of research results or outstanding engineering achievements of likely interest to readers will be published in the Technical Notes format.
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