使用地面除砂器恢复海底产量如何克服油藏、井和设施方面的挑战

M. Guzmán, Thanushya Krishnan, Yong Chin Gwee, Yvonne Wu
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引用次数: 0

摘要

马来西亚深水油田的一口海底井在2019年上半年发现了大量出砂,这口井已经生产了大约7年。2019年下半年的进一步评估确定,井下防砂已经受损,需要进行干预以恢复其锁定的潜力。进行了技术和经济评估,以确定最可行的油井恢复活动。本文涵盖了从技术选择到操作挑战和确定解决方案的各个方面。无隔水管井干预最初被确定为恢复该井的产量,并与其他替代方案进行了比较。经过技术和经济评估,地面除砂器的使用被确定为解锁该井产量的最佳解决方案,同时对更持久的解决方案进行了评估。在一级分离的上游安装了一个表面除砂器。根据关井前最后一次观察到的情况,更新了油井和设施的作业封包,以确定油井的作业窗口。然而,一旦井重新投产,观察到的含水率远高于预期,并且根据地面设置测试了不同的解决方案,以确定新的操作窗口。使用地面除砂器来处理海底防砂故障,需要稳定的流量,防止立管末端的流线出现严重堵塞。储层含水率的变化给井在稳定条件下的流动带来了重大挑战,并限制了地面除砂器的效果。流动保障是避免沿海底管线向平台沉积砂的关键参数。相邻井的使用证明可以实现连续稳定生产,并且设计了一种新的逻辑,可以最大限度地提高两口井的产量,同时防止砂粒进入生产设施。
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Use of Surface Desander to Bring Back Subsea Production. How to Overcome Reservoir, Well and Facilities Challenges
A subsea well in Deepwater field in Malaysia observed high sand production during the first half of 2019, this well had been on production for around 7 years. Further evaluation during the second half of 2019 determined that the downhole sand control had been compromised and the well would require intervention to bring back its locked in potential. Technical and Economical evaluations were conducted to determine the most feasible well restoration activity. This paper covers the aspects from technology selection to operation challenges and identified solutions. Riserless well intervention was initially identified to restore production from this well and compared with other alternatives. After technical and economical evaluations, the use of a surface desander was identified as the best solution to unlock production from this well while a more permanent solution was evaluated. A surface desander was installed upstream of first stage separation. Well and facilities operating envelopes were updated to determine the operating window for the well as per last observed conditions before the well was shut in. However, once the well was back online a much higher than anticipated watercut was observed and different solutions, in term of surface settings, were tested to determine a new operation window. The use of surface desander to handle subsea sand control failure requires a steady flow against a significant choke to the flowline at the end of the riser. Changes in reservoir watercut provided a significant challenge to flow the well at steady conditions and limited the efficacy of surface desander. Flow assurance is a key parameter to avoid sand deposition along the subsea flowline to the platform. Use of a neighbor well proved to allow continuous steady production and a new logic was designed to maximize production from both wells while keeping sand from reaching the production facilities.
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