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Recovery of Oil Resources From the Residual and Transitional Oil Zones of the Permian Basin

机译:来自二叠液盆地的残余和过渡油区的石油资源恢复

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Because of their low to moderate oil saturations, the immobile (but significant) oil resources in the transition and residual oil zones (TZ/ROZ) are not economic to produce using primary/secondary oil recovery techniques. As such, the great majority of domestic oil wells are completed at the first evidence of mobile water (oil-water contact) above the TZ/ROZ. Outside of a small group of forward-looking operators, little is known about the ability to target and produce this large TZ/ROZ resource. However, in the current economic climate and with technology advances, the TZ/ROZ resource offers a new source of domestic oil production. The relatively thick (100s of feet) TZ/ROZ located beneath the traditional main pay zones of Permian Basin oil reservoirs provides an attractive domestic development resource. Carbon dioxide (CO2) enhanced oil recovery (EOR) is a viable technique for recovering immobile residual oil left behind (“stranded”) after waterflooding. Further, the oil saturation in the TZ/ROZ portion of a reservoir is often similar to the oil saturation left after waterflooding. As such, with progress in CO2 flooding technology and availability of affordable supplies of CO2, the oil in the TZ/ROZ could become an economically viable target. This paper will provide updates for four key TZ/ROZ projects (two in the Wasson oil field, one in the Seminole San Andres Unit and a fourth at Salt Creek). These pilot projects plus reservoir simulation work by the authors show that this residual oil can be efficiently recovered using CO2-EOR. The paper discusses how two CO2-EOR practices, selective completions and joint development with the main pay zone, would enable the recovery of the TZ/ROZ resource to be optimized. The paper concludes with an assessment of how much resource potential in the TZ/ROZ may hold for future oil development with the Permian Basin.
机译:由于它们低至中等的油饱和,因此过渡和残留油区(TZ / ROZ)中的不动(但重要的)油资源不经济生产,用于使用初级/二次采油技术生产。因此,在TZ / ROZ之上的移动水(油水接触)的第一个证据中完成了大多数国内油井。在一小群前瞻性的运营商之外,对瞄准和产生这一大型TZ / ROZ资源的能力很少。然而,在目前的经济气氛和技术进步中,TZ / ROZ资源提供了新的国内石油生产来源。位于二叠纪盆地油藏的传统主要工资区下方的相对较厚的(脚)TZ / ROZ提供了有吸引力的国内开发资源。二氧化碳(二氧化碳)增强的储存(EOR)是一种可行的技术,用于在水上灌注后留下后面的固定残留油(“搁浅”)。此外,储存器的TZ / ROZ部分中的油饱和通常与水落下后留下的油饱和度相似。因此,随着二氧化碳洪水技术的进展和经济实惠的二氧化碳供应的可用性,TZ / ROZ中的油可以成为经济上可行的目标。本文将为四个关键TZ / ROZ项目提供更新(Wasson油田中的两个,一个在Seminole San Andres单位和第四个在Salt Creek)。这些试点项目以及作者的储层模拟工作表明,可以使用CO2-EOR有效地回收该残留油。本文讨论了两种CO2-EOR实践,选择性完成和与主要薪酬区的联合开发如何,将能够恢复TZ / ROZ资源进行优化。本文的结论是评估TZ / ROZ中资源潜力的评估可能会使未来的盆地未来的石油开发。

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