Direct Time Domain Simulations for a FPSO Tandem Offloading Operation

Bonjun Koo, Manoj Jegannathan, J. Kyoung, H. Lim
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引用次数: 1

Abstract

In this study, direct time domain offloading simulations are conducted without condensing the metocean data using High Performance Computing (HPC). With rapidly growing computing power, from increased CPU speeds and parallel processing capability, the direct time domain simulation for offloading analyses has become a practical option. For instance, 3-hour time domain simulations, covering the entire service life (e.g. 100,000 simulations for 35 years) of a floating platform, can now be conducted within a day. The simulation results provide realistic offloading operational time windows which consider both offloading operation sequence (i.e. berthing, connection, offloading duration and disconnection) and required criteria (i.e. relative responses, loads on hawser and flow line, etc.). The direct time domain offloading analyses improve the prediction of offloading operability, the sizing of the FPSO tank capacity, and the shuttle tanker selection. In addition, this method enables accurate evaluations of the economic feasibility for field development using FPSOs.
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FPSO串联卸载作业的直接时域模拟
在本研究中,使用高性能计算(HPC)在不压缩海洋数据的情况下进行直接时域卸载模拟。随着计算能力的快速增长,从CPU速度和并行处理能力的提高,直接时域模拟卸载分析已成为一种实用的选择。例如,覆盖浮动平台整个使用寿命(例如,35年100,000次模拟)的3小时时域模拟现在可以在一天内进行。仿真结果提供了真实的卸载操作时间窗,该时间窗考虑了卸载操作顺序(即靠泊、连接、卸载持续时间和断开)和所需标准(即相对响应、锚索和流线负载等)。直接时域卸载分析改进了卸载可操作性的预测、FPSO储罐容量的大小和穿梭油轮的选择。此外,该方法还可以准确评估fpso油田开发的经济可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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