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Cement slurries for sealing casing in boreholes with increased risk of gas migration

机译:用于密封钻孔的水泥浆料,气体迁移风险增加

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摘要

A cement job is one of the most important operations carried out during the drilling of wells. Further functioning of the well depends on the correct execution of the cement job (for instance, in case of a failed cement job, further hydrocarbon deposit production may turn to be difficult or simply impossible). The article presents the issues of the cement slurry technology deployed for sealing shallow boreholes with an increased risk of shallow gas migration. Oil and Gas Institute - National Research Institute has developed a number of cement slurry formulations characterized by properly adjusted density, gelling and bonding time, which will allow the creation of a tight barrier in the borehole annulus that prevents the production fluid from leaking to the surface. Properly modified (with the aid of natural rubber latex or nanosilica) cement slurries based on Portland cement CEM I 42.5 are suitable for use in cement jobs carried out in shallow drilling wells. Particularly advantageous technological parameters have been obtained for cement slurries containing about 0.5-1% nano-SiO_2. The optimal water-cement ratio for these formulas was at the level of about 0.50-0.52. Both latex-containing and nano- SiO_2-containing samples were characterized by a very advantageous course of the gelation plot (static build-up of gel strength). Their TT transition times amounted to several tens of minutes (which is a proof of high ability to prevent gas migration from shallow gas accumulations). Bonding times of the tested slurries can be successfully controlled using acceleration agents commonly used in the industry. Slurries that had been tested using the Vicat apparatus were characterized by a bonding time in the range from approximately 100 up to 280 minutes. As a result, depending on the anticipated length of the cementing job, the required bonding time can be appropriately adjusted. Compressive strength after 7 days of hydration was high (for samples with the addition of latex, they were about 22-23 MPa, for nano- SiO_2 slurries around 29-31 MPa). Due to their good technological parameters, the cement slurries developed at Oil and Gas Institute - NRI could be used in the process of cementing casing strings, e.g. in the Carpathian Foreland, where there is a shallow gas accumulation hazard.
机译:水泥工作是井中钻井期间最重要的操作之一。井的进一步发作取决于水泥作业的正确执行(例如,在水泥作业失败的情况下,进一步的碳氢化合物沉积物生产可能变得困难或根本不可能)。本文介绍了部署的水泥浆技术的问题,用于密封浅钻孔,随着浅气体迁移的风险增加。石油和天然气研究所 - 国家研究所开发了许多通过适当调整的密度,胶凝和粘合时间的水泥浆料配方,其允许在钻孔环中产生紧密屏障,防止生产流体泄漏到表面上。适当改性(借助天然橡胶胶乳或纳米硅藻)水泥浆基,基于波特兰水泥CEM I 42.5适用于在浅钻井井中进行的水泥作业。已经获得了特别有利的技术参数,用于含有约0.5-1%纳米SiO_2的水泥浆料。这些配方的最佳水水柱比例为约0.50-0.52。通过凝胶化图的非常有利的过程(凝胶强度静态积聚),表征含含胶乳和纳米SiO_2的样品。它们的TT过渡时间达到几十分钟(这是一种高能力的证据,以防止气体迁移从浅气累积)。可以使用行业中常用的加速剂成功控制测试浆料的粘合时间。使用VICAT装置测试的浆料的特征在于约100至280分钟的键合时间。结果,取决于胶合作业的预期长度,可以适当地调整所需的键合时间。水合7天后的抗压强度高(对于添加胶乳的样品,它们约为22-23MPa,用于约29-31MPa的纳米SiO_2浆料)。由于其良好的技术参数,石油和天然气研究所开发的水泥浆料 - NRI可用于胶合套管串的过程中,例如,在喀尔巴阡山脉的前陆,在那里有浅气体积聚危险。

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