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Fighting Lead and Zinc Sulphide Scales on a North Sea HP/HT Field

机译:在北海高压/高温场上与铅和硫化锌鳞片作战

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Lead and Zinc sulphides have recently become a concern in some HP/HT gas fields. The Elgin/Franklin Field (Central Graben North Sea), started production early 2001. The wells produce a condensate-rich gas from the Fulmar and Pentland reservoirs, with initial temperature of 200 degC and pressure of 1100 bar. Mid-2002, the first Calcium Carbonate obstructions appeared downhole on several wells and resulted in a progressive production decrease. Moreover, lead and zinc sulphides were identified on well G6. The heavy scaling from its surface-controlled subsurface safety valve (SCSSV) to the Christmas Tree caused the well to be shut-in from end 2004 until an appropriate programme of remediation and prevention was implemented. Lead and zinc sulphides had not been predicted during the initial scaling studies. While several publications mention these on HP/HT fields, little information is available on downhole inhibitor squeeze. Scale removal lab studies included dissolution of the recovered scales and corrosion tests. A different fluid package was selected for downhole and SCSSV conditions. Scale remediation using downhole acid washes proved efficient by increasing wells production. The upper part of the completion on well G6 was cleared from scales by a coiled tubing operation in mid-2005 and the integrity of the SCSSV was restored. To prepare for scale prevention, a benchmarking of inhibitors from four suppliers was performed in a third party lab over a period of more than two years. Appropriate equipment was put in place and the methodology was optimised. The tests were conducted in anaerobic conditions with thermally aged chemicals. Two scale inhibitor squeezes were deployed, although progress is still to be made for "exotic" scale prevention. This paper presents the Elgin/Franklin scale-control strategy from a thorough fluids selection to the field deployments. Results and optimisation are discussed
机译:铅和锌的硫化物最近已成为某些HP / HT气田的关注点。埃尔金/富兰克林油田(北格拉本中部)于2001年初开始生产。这些油井从富尔马和彭特兰储层中产生富含冷凝水的天然气,初始温度为200摄氏度,压力为1100巴。 2002年中,第一个碳酸钙阻塞物出现在井下的几口井中,导致产量逐步下降。此外,在G6井上发现了铅和锌的硫化物。从表面受控的地下安全阀(SCSSV)到圣诞树的沉重积垢,导致该井从2004年底开始关闭,直到实施了适当的补救和预防措施。在最初的结垢研究中并未预测出铅和锌的硫化物。尽管有一些出版物在HP / HT领域提到了这些,但有关井下抑制剂挤压的信息很少。除垢实验室研究包括回收的水垢的溶解和腐蚀测试。为井下和SCSSV条件选择了不同的流体包。通过增加油井产量,证明使用井下酸洗液进行水垢修复是有效的。 2005年中期,通过连续油管操作清除了G6井完井的上部水垢,恢复了SCSSV的完整性。为了准备防垢,在超过三年的时间里,在第三方实验室对来自四个供应商的抑制剂进行了基准测试。放置了适当的设备,并对方法进行了优化。测试是在厌氧条件下用热老化的化学药品进行的。部署了两种阻垢剂挤压剂,尽管在“异国”防垢方面仍需取得进展。本文介绍了从彻底的流体选择到现场部署的Elgin / Franklin垢控制策略。讨论结果和优化

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