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Design Optimization from 3 Strings to 2 Strings for Deep Wells in Sirikit Field

机译:在Sirikit字段中的3个字符串设计优化到深井的2个字符串

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Oil and gas industry continues to increasing demand of more cost-effective well design and operations.Thus,PTTEP Thai onshore drilling team response to the mission by enhancing well design of deep wells in Sirikit Field from three strings to two strings well.This optimization not only reduce cost per well but also unlock reserve in deeper section which used to be uneconomic.To implement two strings design for deep wells with long open hole section(more than 2,000 mMD),there are key challenges which has to be overcome as per listed below; ? Directional control issue ? Higher torque,drag and side force ? Difficulty for wireline logging and casing running operation ? Formation stability and lost circulation ? Revised Casing Design To overcome these challenges,not only suite of tools and technologies have to be studied and field proven but drilling practice also has to be reviewed.Risk assessment and feasibility study has been conducted to ensure that this design optimization would results in positive outcome Since the first implementation in 2015,more than 50 wells have been successfully drilled and completed.The longest open hole section of 2,899.3 mMD with TD of 4,202 mMD has been achieved and average cost saving of more than 25% per well has been realized.Below list the technology applied to overcome challenges; 1.All targets have been penetrates without directional control issue using Rotary Steerable System(RSS).2.High drilling torque have been mitigated using high torque drill pipe and torque reduction tools.3.Reamer and back-reaming out of hole have been used to smoothen wellbore which facilitate wireline logging and casing running operation.4.Eccentric casing shoe and low-friction centralizers have been used to further aid running casing in high angle wells.5.High drilling fluid weight has been used in advance to combat formations stability issue.Hence,lost circulation materials(LCMs)have been prepared to mitigate loss circulation due to high ECD.6.Polymer based spacer system have been used for the wells which have potential of lost circulations while cementing.
机译:石油和天然气行业不断的更具成本效益以及设计和operations.Thus的需求不断增加,PTTEP泰国陆上钻井队伍响应通过增强以及来自三串在诗丽吉场深井的设计,以两个字符串well.This优化不是任务只有降低成本每孔,而且在更深的部分解锁储备曾经是uneconomic.To实现两个字符串的设计与长裸眼段(2000多MMD)深水井,也有关键挑战必须加以克服,因为每个上市以下;还是方向控制问题?更高的扭矩,阻力和侧向力?难的电缆测井和下套管作业操作?形成稳定和堵漏?修订外壳设计为了克服这些挑战,不仅是一套工具和技术,还有待研究和现场验证,但钻井实践也必须reviewed.Risk评估和可行性研究已经进行,以确保这个设计优化将导致积极成果自从2015年首次实施,超过50口井已顺利完钻,并完成进度2,899.3 MMD与4202 MMD的TD最长裸眼段已经达到,平均成本节约的每口井已经realized.Below超过25%列出适用于克服困难的技术; 1个,所有的目标已经在不使用旋转导向系统(RSS).2.High钻探方向控制问题贯穿使用高扭矩钻杆和转矩降低tools.3.Reamer和背面扩孔孔的出扭矩已经减轻已被用于以平滑井筒便于电缆测井和下套管operation.4.Eccentric套管鞋和低摩擦扶正器已被用于wells.5.High钻井液重量已预先用于对抗地层稳定性运行在高角度壳体进一步帮助issue.Hence,堵漏材料(LCMS)已经准备以减轻损失循环由于高ECD.6.Polymer基于间隔件系统已被用于具有潜在丢失环流而固井的孔中。

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