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Successful Infill Realized through Prudent Brownfield Oil Rim Reservoir Management,Offshore Malaysia

机译:通过谨慎的布朗菲尔德石油RIM水库管理成功填充,马来西亚近海

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Managing an oil rim type reservoir has constantly been a great challenge and understanding the oil rim movement has remained as one of the main subsurface uncertainties. Prudent reservoir management through an active reservoir,well and facilities management(RWFM)plan is key to realizing the uncertainties,optimizing production and reserves of brownfields. Monitoring the oil rim through cased-hole reservoir saturation logging has been identified as a de-risking method,planned and executed for two consecutive years in the field to minimize the oil rim uncertainty. The field studied is one of the brownfields in offshore Sarawak,Malaysia,which has been on production for more than 40 years. Results acquired from the cased-hole logs have triggered the need to optimize the location of an infill oil producer planned in the Field Development Plan. The cased-hole results indicated that the original oil target in the N reservoir had mostly been swept by water. Through thorough studies and modeling,an opportunity to the western flank in M reservoir,located close to a proposed workover well,was suggested. Furthermore,latest input on the proposed workover well and facilities health check suggested the workover candidate was not favourable due to its location on an aging single well monopod structure with complex well mechanical problems. Thus,the planned infill oil producer was recommended to replace the workover well and recover the reserves. Integrated studies incorporated cased-hole results with reservoir modeling indicated that the new infill location would yield a total of 5.7MMSTB reserves with initial production rate of 1215BOPD. In addition,through integration of a multi-disciplinary team,revision to the infill location was timely and the infill was also accelerated from Phase II to Phase I of the development plan as a rig filler for cost optimization. Well test result successfully validated the reservoir productivity of 1238BOPD with no water production. This paper presents the integrated subsurface and surface solutions and criticality of proactive data acquisition,field monitoring and collaborative team work strategies to maximize the recovery from a brownfield.
机译:管理油边型水库已不断受到了极大的挑战和理解油环运动一直为主要地下不确定因素之一。通过积极稳健的水库水库管理,以及和设备管理(RWFM)计划的关键是实现的不确定性,优化生产和棕地的储备。通过监测套管井储层饱和度测井油环已被确定为去冒险方法,有计划,在该领域,以尽量减少油环的不确定性连续两年执行。研究的领域是离岸马来西亚沙捞越,已生产超过40年棕地之一。从套管井测井获得的结果触发了需要优化的填充产油国油田开发方案计划的位置。套管井结果表明,在N贮存原油目标几乎都被水掠。经过深入研究和建模,使用M水库西侧,靠近提议修井很好的机会,建议。此外,在提出修井最新的输入以及和设施的健康检查建议的修井候选人是不是它的位置有利,由于与复杂井的机械故障老化单井脚架结构。因此,建议计划填充石油生产取代了修井好,恢复储备。与储层集成研究并入套管井结果模型提示,新的填充位置将产生一个总5.7MMSTB储量1215BOPD的初始生产速率。此外,通过多学科团队的整合,修订了填充的位置是及时和填充也从第二阶段向加速发展计划,作为成本优化钻机填料的第一阶段。那么测试结果成功验证1238BOPD的储层产能没有水的生产。本文介绍了综合地下和地表的解决方案和前瞻性数据采集,现场监测和团队协作的工作策略的关键性最大限度地从棕地恢复。

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