Vega资产-挪威凝析气海底生产系统中安全、成功的天然气水合物堵塞修复

Seetharaman Navaneetha Kannan, Magne Torsvik, L. Ugueto, Stephan Hatscher, Sriram Ravichandran, Dendy Sloan, L. Zerpa, Carolyn Koh
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引用次数: 1

摘要

在海底管线中形成的天然气水合物桥塞给桥塞修复作业带来了复杂的挑战,并可能导致巨额的运营支出。2020年6月,在挪威的Vega天然气凝析海底资产中,在一条12”ID的管道中发现了水合物堵塞。这项工作记录了一系列的作业活动,包括水合物堵塞的检测、建模评估以及安全成功的堵塞修复工作。假设流线中存在多个桥塞,则可能在桥塞之间形成气穴,形成中间高压区域。在水合物平衡压力(5°C时为10 bara)以下,流线的双面降压成功地建立了来自流线两端的压力通信。现场数据解释显示,在桥塞分离过程中,气穴的释放和相应的压力峰值。水合物堵塞检测和融化的操作经验,以及建模活动,为未来的水合物修复操作提供了有价值的输入。在记录和分析所有事件的过程中,团队的集体努力解决了石油和天然气行业中三个最重要的问题,即人员、设备和环境的安全。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Safe and Successful Gas Hydrate Plug Remediation in Vega Asset – Norwegian Gas Condensate Subsea Production System
Gas hydrate plugs formed in subsea flowlines create complex challenges in plug remediation operations and can result in significant operational expenditures. In Vega, a Norwegian gas condensate subsea asset, a hydrate blockage was identified in a 12" ID flowline in June 2020. This work chronicles a series of operational activities in the detection of the hydrate blockage, modeling assessment, and safe and successful plug remediation efforts. Under the assumption that multiple plugs were present in the flowline, gas pockets could have formed in between the plugs, creating intermediate high-pressure regions. The two-sided depressurization of the flowline below hydrate equilibrium pressure (10 bara at 5°C) established successful pressure communication from both ends of the flowline. The field data interpretation showed the release of gas pockets and the corresponding pressure spikes during plug dissociation. The operational experiences from hydrate plug detection and melting, as well as modeling activities, provide valuable input for future hydrate remediation operations. The collective team effort in recording and analyzing all the instances addresses three main concerns of paramount significance in the oil and gas industry, which include the safety of personnel, equipment, and the environment.
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