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Polymer Injection Pilots in Bhagyam Oil Field and Full Field Polymer Development Planning

机译:BHAGYAM油田的聚合物注射飞行员和全场聚合物开发规划

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The paper describes the experience of polymer injection pilots from both subsurface, surveillance and facilities perspective. It also discusses the optimization approach for revising the full field polymer plans. Bhagyam is an onshore oil and gas field in Rajasthan, India. The main producing unit is Fatehgarh multi- storied fluvial sand stone of Paleocene age. The oil is moderately viscous (20 cP to 400 cP) with a vertical viscosity gradient. Reservoir quality is excellent with porosity in the range of 25-30% and permeability of 1 to 10 Darcy. Bhagyam was developed as an edge water injection drive with 153 development wells and put on production in 2012. Polymer flood was recognized early in field life as a viable secondary recovery process. Bhagyam has several characteristics suited for polymer flood like high initial oil saturation, high rock permeability, low reservoir temperature, low connate water and low water salinity. A full field polymer development plan was envisaged in 2013 with a combination of pattern polymer flooding and peripheral polymer injection in water leg. But the field performance under water flood was way below expectations. Along with the fall in crude prices in 2014, the project turned economically unviable. Two polymer injection pilots were done to de risk the polymer flood. A multi-disciplinary team worked to optimize the pilot and full field development plan and improve the modeling of water flood. The two pilots used skid mounted polymer preparation units installed at the well pad and focused on data gathering. An online viscometer and special sampler with chemical stabilizers were used for polymer viscosity measurements. PLT, IFOs and polymer quality parameters like filter ratio, viscosity etc were also regularly measured. A revamped reservoir model was built for the field which helped better characterize the water flood performance. The tests were successful with the wells injecting at or better than expected rates. The offset response was good with WOR drop and oil rate increase in many nearby producers. The conformance of some injectors was successfully managed with selective completions installed. To reduce costs, additional well drilling count was reduced by focusing on high net pay areas, reducing polymer consumption by cutting back on water leg polymer injection, and optimizing polymer viscosity. Pipeline requirements were reduced and polymer injection facilities modified from centralized to skid based. The optimization significantly reduced costs compared to the earlier plan. The economic viability of the project was established at lower oil prices and the modeling efforts along with pilots helped significantly reduce the uncertainty associated with the project.
机译:本文介绍了来自地下,监视和设施的观点的聚合物注入飞行员的经验。它还讨论了修改全场聚合物计划的优化方法。 Bhagyam是印度拉贾斯坦邦的陆上石油和天然气场。主要生产单位是古典时代的Fatehgarh多层氟砂石。该油具有适度粘性(20cp至400cp),具有垂直粘度梯度。储层质量优异,孔隙度为25-30%,渗透率为1至10达西。 Bhagyam被开发为具有153种开发井的边缘注水驱动器,并于2012年推出生产。聚合物洪水在现场生活中作为一种可行的二级恢复过程认可。 BHAGYAM具有适用于高初始油饱和度,高岩石渗透性,低储层温度,低生成水和低水盐度等高分子洪水的特点。 2013年设想了全场聚合物发展计划,其在水腿中的图案聚合物泛洪和外周聚合物注射组合。但是,水洪下的现场表现就在低于预期之外。随着2014年的原油价格下跌,该项目变得经济地不可行。完成了两种聚合物注射飞行员对聚合物泛滥的风险。多学科团队致力于优化飞行员和全场发展计划,提高水洪水建模。这两台飞行员使用安装在井垫上的滑动安装的聚合物制备单元,并专注于数据收集。具有化学稳定剂的在线粘度计和特殊采样器用于聚合物粘度测量。 PLT,IFOS和聚合物质量参数如过滤器比,粘度等也经常测量。为该领域建造了一个改进的水库模型,这有助于更好地表征水洪水性能。该测试成功地注入或优于预期的速率。许多附近生产商的偏移响应具有良好的下降和油利率。使用选择性完成成功管理了一些注射器的一致性。为了降低成本,通过聚焦高净支付区域,通过切割水腿聚合物注射并优化聚合物粘度来降低额外的钻井计数,降低聚合物消耗。管道要求减少,并从集中化以基于SKID的聚合物注射设施。与早期计划相比,优化显着降低了成本。该项目的经济可行性以较低的油价建立,建模努力以及飞行员的努力有助于大大减少与该项目相关的不确定性。

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