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Assessment of materials compatibility with high density Brines completion fluid of HPHT wells

机译:与HPHT井的高密度Brines完井液进行材料相容性评估

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High pressure high temperature (HPHT) Oil and Gas developments often require high density clear brines for well completion fluids used in the final stages of well construction. Formate and bromide brines are two which are commonly used. Heavy completion brines can, however, pose a corrosion and cracking threat, especially if the pH reduces or the brine degrades under high pressure/high temperature conditions. This latter threat can be problematic where the completion design permits brine to be trapped in the completion for an extended period, especially if further contaminated with formation treatment chemicals and formation fluids. Laboratory testing was conducted to explore the credibility of such a threat for two candidate completion brines. In the present work, a buffered mixed formate and a proprietary bromide brine were tested under 14Bar CO_2 at 140°C. The materials tested were: super martensitic stainless steel (UNS S41426) tubular, super duplex stainless steel UNS S39274 tubular, API 5CT/ ISO 11960 grade "C125" casing and nickel alloy (UNS N08825). The paper presents the specific corrosion and cracking threats introduced by the brines.
机译:高压高温(HPHT)石油和天然气开发通常需要高密度的透明盐水,以用于在井建设的最后阶段中使用的完井液。甲酸盐和溴化物盐水是常用的两种。但是,重质完井盐水会造成腐蚀和开裂的危险,尤其是在高压/高温条件下pH降低或盐水降解的情况下。在完井设计允许盐水长时间滞留在完井中的情况下,后一种威胁可能会成为问题,特别是如果进一步受到地层处理化学剂和地层流体污染的情况。进行了实验室测试,以探究这种威胁对两种候选完井盐水的可信度。在本工作中,在14Bar CO_2和140°C下测试了缓冲的混合甲酸盐和专有的溴化盐水。测试的材料为:超级马氏体不锈钢(UNS S41426)管状,超级双相不锈钢UNS S39274管状,API 5CT / ISO 11960级“ C125”外壳和镍合金(UNS N08825)。本文介绍了盐水引起的具体腐蚀和开裂威胁。

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