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Integrated Reservoir Study to Optimize Gas Production of Water Drive Gas Reservoir Case Study: Lower Menggala Gas Field

机译:集成水库研究,优化水驱储气储层案例研究的天然气生产:下孟加拉气田

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Production optimization in mature field water drive gas reservoir is not easy especially when water already breakthrough in producing wells. An integrated reservoir study is needed to get reliable strategy to optimize production of water drive gas reservoir. This research presents the integrated reservoir study of Lower Menggala (LM) Gas Field which is located Central Sumatera Basin, Riau Province. LM had been produced since 1997, current RF are 55%, which is quite high for water drive gas reservoir. The current gas rate production is about 1.97 MMscfd with high water production around 4250 BWPD, consequently some of wells suffered liquid loading problem This research comprises of well performance analysis, estimate OGIP, aquifer strength of the reservoir by using conventional material balance method and modern production analysis method then conduct dynamic reservoir simulation to identify the best strategy to optimize gas production. Economic analysis also be performed to guide in making decision which scenario will be selected. DST analysis on DC-01 well defined reservoir parameter, boundary and deliverability which are P*= 2520 psia, k= 229 mD, Total skin= 8, detected sealing fault with distance 175 m, and AOF 45 MMscfd. Conventional material balance method gave OGIP 22.7 BScf, aquifer strength 34 B/D/Psi, whereas modern production analysis estimated OGIP 22.35 BScf, aquifer strength 34 B/D/psi. Those two method shows good consistency with OGIP volumetric calculation with discrepancy OGIP value +/- 1%. Six (6) scenario of production optimization has been analyzed, the result shows that work over in two wells and drilling of 1 infill well (case 6) achieve gas recovery factor up to 75.2%, minimal water production and attractive economic result.
机译:成熟田间水驱动储层的生产优化并不容易,特别是当水已经突破生产井时。需要一项集成的水库研究,以获得可靠的策略来优化水驱燃气藏的生产。本研究介绍了位于Riau省中央苏州山谷的蒙古拉(LM)天然气场的综合水库研究。自1997年以来已生产LM,目前的RF为55%,对于水驱燃气藏而言非常高。目前的燃气速率产量约为1.97 mmscfd,水平高出4250 bwpd,因此一些孔遭受液体装载问题本研究包括井的性能分析,估计ogip,通过使用常规材料平衡方法和现代生产来估算储层的含水层强度。分析方法然后进行动态储层模拟,以确定优化天然气生产的最佳策略。还在进行经济分析方面进行指导,决定将选择哪种情况。 DST分析DC-01良好定义的储层参数,边界和可传递能力为P * = 2520psia,k = 229 md,总皮肤= 8,检测到距离175 m的密封故障,以及45 mmscfd。常规材料平衡方法给出了OGIP 22.7 BSCF,含水层强度34 B / D / PSI,而现代生产分析估计OGIP 22.35 BSCF,含水层强度34 B / D / PSI。这两种方法显示出良好的一致性与Ogip体积计算,具有差异ogip值+/- 1%。已经分析了六(6)方案的生产优化,结果表明,在两个井中的工作和钻井1个填充井(案例6),实现了储气回收率,最高可达75.2%,水资源的最小产量和有吸引力的经济结果。

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