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Turning a High-Pressure, High-H2S Oil Carbonate Reservoir Development Viable Through Miscible Gas Injection in the Sultanate of Oman

机译:高压,高H2S油碳酸盐储层通过阿曼苏丹酸盐的混溶气体注射可行发育可行

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The development of low porosity, low permeability carbonate oil reservoirs remains a challenge in the industry. Identifying a technically and economically viable development is further complicated when high pressures, high temperatures & high H2S concentrations are encountered at large depths. For such reservoirs, depletion developments are typically the only economically justifiable option but typically result in very low Hydrocarbon Recovery Factors. This paper presents a case study of a complex field located in the south of the Sultanate of Oman that includes a carbonate stringer reservoir encased in the Ara Salt. A viable Miscible Gas Injection (MGI) development scheme has been identified and turned into an economical option for this field. The field X A3EC was discovered in 2011 within the Greater Birba area. Since it was put on production in 2013, the performance of this carbonate stringer has been relatively poor compared to other analogue fields. No feasible technical solution could be identified to develop the field beyond the very low estimated ultimate Recovery Factor (~6%) achievable under depletion. Alternative developments could not be sanctioned mainly because of poor economics resulting from limited expected incremental recovery. Moreover, the drillability of additional wells could not be confirmed following subsurface re-interpretation & dynamic history matching of the available pressure data. In 2017 a study was carried out that incorporated newly collected pressure data, seismic and geological interpretations, as well as static & dynamic modeling. A new approach to history matching was also applied. This study turned further field development from technically unfeasible into an economically attractive & doable project. Moreover, new appraisal and well stimulation plans were identified to address the remaining field uncertainty on the in-place volume and well productivity. The proposed technical solution for further development of Field X A3EC involves a phased implementation of a MGI scheme which will increase the expected Recovery Factor in the target zone by more than 35 %. The drillability of the targeted field area was established by reducing the uncertainty on the reservoir pore pressure through extensive dynamic simulation work supported by newly collected long-term pressure build-up data. Field X A3EC development will feed into and benefit one of the largest projects in the Middle East - the Rabab Harweel Integrated Project (RHIP) that is currently under construction, further adding to the value of this large integrated facility. This paper highlights the challenges faced whilst developing complex contaminated oil carbonate reservoirs and identifies technically feasible solutions for further development of such fields via an integrated approach.
机译:低孔隙度,低渗透性碳酸盐油藏的发展仍然是该行业挑战。在大深度遇到高压,高温和高H2S浓度时,识别技术和经济上可行的发育进一步复杂化。对于这种储层,耗尽发展通常是唯一经济上合理的选择,但通常导致烃恢复因素非常低。本文提出了一个位于阿曼苏丹南部南部的复杂领域的案例研究,包括包裹在Ara盐中的碳酸盐纵梁储层。已经确定了可行的混溶式气体注入(MGI)发展方案并转变为该领域的经济选择。 Field X A3EC于2011年在大Birba地区发现。由于它在2013年进行了生产,因此与其他类似物领域相比,这种碳酸盐纵梁的性能相对较差。无法识别不可行的技术解决方案,以发展超出耗尽下可实现的极低估计的最终回收因子(〜6%)的领域。替代发展无法制定,主要是由于有限的预期恢复所产生的经济性差。此外,在可用压力数据的地下重新解释和动态历史匹配之后,无法确认附加孔的可钻性能。 2017年,进行了一项研究,该研究纳入了新收集的压力数据,地震和地质解释,以及静态和动态建模。还应用了一种新的历史匹配方法。这项研究从技术上无法进一步发展到经济上有吸引力和可行的项目。此外,确定了新的评估和良好的刺激计划,以解决原始体积和生产力的剩余场地不确定性。所提出的技术解决方案,用于进一步发展的现场X A3EC涉及分阶段实施MGI方案,该方案将增加目标区中的预期恢复因子超过35%。通过通过新收集的长期压力积累数据支持的广泛的动态模拟工作来降低储层孔隙压力的不确定性来建立目标场区域的可钻性。 Field X A3EC的开发将送入并利用中东最大的项目之一 - 目前正在建设的Rabab Harweel综合项目(RAP),进一步增加了这一大型集成设施的价值。本文突出了挑战所面临的挑战,同时开发复杂的受污染的油碳酸盐储层,并通过综合方法识别技术可行的解决方案,以便通过综合方法进一步发展这些领域。

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