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SELECTION OF AN ACTIVE SOURING MANAGEMENT SOLUTION FOR A GULF OF MEXICO WATERFLOOD

机译:选择墨西哥湾墨西哥湾的活跃的辅助管理解决方案

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This paper presents an overview of the factors involved in the selection of an active souring management solution for the Mars field, at which waterflood operations are due to commence in March 2004. It is well documented that the majority of similar seawater injection applications have experienced increased down-hole sulfate-reducing bacteria activity and the reservoir souring and H_2S control difficulties associated with this. The Mars field was initially commissioned in 1996 with non-NACE MR0175 compliant materials used for well tubing and casing. Following detailed reservoir modeling, and HSE Risk Assessment, a plan was developed to change-out all production tubing to NACE materials, and a 100 percent redundant H_2S monitoring system was installed. However, replacement of production casing materials was cost prohibitive so a plan was developed to mitigate the predicted levels of souring by the use of an active souring control approach. Investigation into the various alternatives available, including sulfate removal membranes, biocide treatment and nitrate or nitrite injection, has determined that nitrate injection is likely to be the most effective souring prevention tool.
机译:本文概述了在2004年3月开始的火星领域选择积极的制作管理解决方案所涉及的因素。它有充分的记录,大多数类似的海水喷射应用程序都有增加降低硫酸盐降低细菌活性和储层和H_2S控制与此相关的困难。 Mars Field最初在1996年签署了非NACE MR0175,用于良好的管道和套管。在详细的储层建模和HSE风险评估之后,开发了一个计划以将所有生产管道换成NACE材料,并安装了100%的冗余H_2S监控系统。然而,更换生产套管材料是成本令人禁止的,因此开发了一个计划,以通过使用活性溶解的控制方法来减轻预测的酸性水平。调查进入各种替代品的可用,包括硫酸盐去除膜,杀生物剂处理和硝酸盐或亚硝酸盐注射,已经确定硝酸盐注射液可能是最有效的防潮工具。

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