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First Application of Underbalanced Drilling in Fractured Carbonate Formations of Iranian Oil Fields Leads to Operational Success and Cost Savings

机译:第一次在伊朗油田的骨折碳酸盐岩中钻井钻井的应用导致运营成功和成本节约

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Underbalanced drilling techniques (UBD) are evolving at a fast pace as oil companies learn how to use the technology to maximize well production and lower finding costs. Although there was some air drilling through surface drilling activities in Iran for the past decade, the full package of UBD equipment and other UBD techniques were not introduced until National Iranian Oil Company (NIOC) supplied the package for a pilot project in southern Iran. The first well selected to be drilled UBD was GS 333, the reason for selecting that particular well was because the Gachsaran field is depleted and sever mud losses is experienced while conventional drilling, also, the UBD technique is expected to increase productivity of the well by decreasing formation damage resulted from drilling fluid losses. The drill pipe injection technique was proposed to be utilized in this well because of its suitability for the well conditions where it is not expected to drill through the gas cap and the well will be completed in 8 綌 open hole. This paper discusses the well design, UBD design parameters, Underbalanced modeling considerations and the lessons learned from this job which all led to the success of this project. It is also describe the process used to address HSE issues of the project in the face of the potential presence of H2S while drilling. The drilling and production results that were achieved were significant to the future operational potential and viability of this mature field. Of equal importance was the success of the operation from a health, safety and environmental (HSE) perspective in an environment in which the industry has been traditionally reluctant to use UBD techniques.
机译:低位钻探技术(UBD)正在快速发展,因为石油公司了解如何使用该技术来最大限度地生产和降低的发现成本。虽然过去十年来,伊朗的表面钻井活动有一些空气钻探,但在国家伊朗石油公司(NIOC)向伊朗南部的试点项目提供了一揽子计划之前,没有推出完整的UBD设备和其他UBD技术。第一阱选择待钻UBD是GS 333,用于选择特定井是因为Gachsaran字段被耗尽,并且服务器泥浆漏失是有经验的原因而常规钻孔,而且,UBD技术预计增加的井产钻孔流体损失导致的形成损伤减少。提出了钻井管注射技术,因为它适用于它对于不期望通过气体帽钻井的井条件的适用性,并且井将在8°开孔中完成。本文讨论了井设计,UBD设计参数,低估的建模考虑因素和从这项工作中吸取的经验教训,所有这些都导致了这个项目的成功。还描述了用于在钻井时面对H2S的潜在存在的突出项目的HSE问题的过程。实现的钻井和生产结果对于该成熟场的未来运行潜力和可行性具有重要意义。同样重要的是,在一个传统上不愿使用UBD技术的环境中的健康,安全和环境(HSE)视角下的运作成功。

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