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Water-Alternating-Gas (WAG) Pilot Implementation, A First EOR Development Project in Dulang Field, Offshore Peninsular Malaysia

机译:水交配天然气(WAG)试点实施,达兰田的第一个EOR开发项目,海上半岛马来西亚

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Some of the older oil fields in Malaysia can be characterized as mature water floods. Schemes for enhancing and prolonging the already declining production and diminishing reserves strategically call for timely implementation of Enhanced Oil Recovery, EOR applications. Among various Enhanced Oil Recovery (EOR) processes and techniques, Malaysia's reservoirs appear especially amenable to gas injection. Feasibility studies showed that immiscible Water-Alternating-Gas (WAG) injection is potentially the most practical and viable option. Laboratory studies and numerical simulation study conducted on the applicability of immiscible WAG injection using high CO2 content gas indicated that an additional 5-7% of OOIP can be recovered [1]. Such a gain will result in reserves growth and extended producing life of these reservoirs. WAG application is being field tested by implementing a pilot in a sub-block, South-3 of the Dulang field, which is isolated from other sub- blocks, by major faults. One in-fill well was drilled specifically for the current pilot. Upon drilling this infill well, several geological complexities were uncovered, that called for a thorough revisit of modelling and pilot conceptual plans. The pilot area contains 6 wells, three of which are being used as producers during WAG operations.
机译:一些在马来西亚老油田可以被定性为成熟的水涝。加强和延长已经产量下降和储备减少的战略方案要求及时落实提高石油采收率,EOR应用。在各种提高石油采收率(EOR)的工艺和技术,马来西亚的水库出现特别适合于注气。可行性研究表明,不混溶水气交替(WAG)注入可能是最实际和可行的选择。实验室研究和使用高CO 2含量不混溶气体注入WAG的适用性进行数值模拟研究表明,OOIP的额外5-7%可被回收[1]。这样的增益会导致储量增长和扩大生产这些水库的使用寿命。 WAG申请是场通过实现在一个子块中的导频测试,南-3杜朗字段,它是从其他子块分离的,由主要故障。一个在填充孔用于当前导频具体钻孔。在此钻加密井,几个地质的复杂性被发现,即呼吁建模和试点概念计划彻底回访。导频区域包含6个孔,其中三个被用作期间WAG操作生产者。

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