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Natural gas ultimate recovery growth modeling by plays in the Gulf Coast Basin.

机译:通过墨西哥湾沿岸盆地的天然气进行的最终采收率增长模拟。

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Estimates of ultimate recovery, the sum of the proved reserves and cumulative production up to a specific time, are initially conservative due to the lack of understanding of the geological, engineering, and production characteristics of the reservoir or field. Ultimate recovery tends on average to increase substantially over time and drilling due to better understanding of the reservoir or field and application of advanced technologies. In recent years, natural gas ultimate recovery growth has become a major component of total U.S. annual natural gas reserve additions.;Although there is a wide range in ultimate recovery growth potential by play and that potential is a function of the drilling and technology applied, current ultimate recovery growth studies are gross, averaging wide ranges, aggregated by broad provinces, and calculated solely as a function of time. An assessment on a play basis is the key to understanding the future role of natural gas ultimate recovery growth in the Gulf Coast Basin. Ultimate recovery growth varies according to plays because of different geological, engineering, and production characteristics and amenability to advanced recovery technology.;Natural gas ultimate recovery growth in Texas Railroad Commission (TX RRC) District 4 was initially analyzed on the basis of its role as a major natural gas producing district in the Gulf Coast Basin where significant technological advancements have been routinely applied. Significant ultimate recovery growth and future potential was observed for the total 520 major natural gas fields of TX RRC District 4. However, important ultimate recovery growth data were masked by such total, aggregated analysis.;Play analysis revealed important ultimate recovery growth trends and characteristics. Plays WX-2, WX-4, and VK-1 revealed significant future ultimate recovery growth potential. These plays are comprised of relatively recently discovered fields, especially play WX-2. Deeper reservoir depths of these plays have induced high structural complexities due to fault compartmentalization, reservoirs designated as tight gas/low-permeability, and high initial reservoir pressures.
机译:由于缺乏对储层或油田的地质,工程和生产特性的了解,因此最初的估计是最终的估计值,已探明储量的总和以及特定时间之前的累计产量。由于对油气藏或油田的了解以及先进技术的应用,最终采收率平均会随着时间和钻井的增加而显着增加。近年来,天然气的最终采收率增长已成为美国年度天然气总储量增加的主要组成部分;尽管最终采掘率的增长潜力发挥了很大的作用,并且该潜力是所应用的钻井和技术的功能,当前的最终复苏增长研究是粗略的,平均范围很广,由各省汇总,仅作为时间的函数进行计算。进行评估是了解墨西哥湾沿岸天然气最终采收率增长的未来作用的关键。由于地质,工程和生产特征的不同以及对先进采油技术的适应性,最终采收率的增长因地层的不同而不同。德克萨斯州铁路委员会(TX RRC)4区天然气的最终采收率增长是根据其作用进行初步分析的墨西哥湾沿岸盆地的一个主要天然气生产区,常规应用了重大技术进步。在TX RRC 4区的520个主要天然气田中,观察到了显着的最终采收率增长和未来潜力。但是,通过这种总体汇总分析掩盖了重要的最终采收率增长数据。 。剧作WX-2,WX-4和VK-1显示了巨大的未来最终恢复增长潜力。这些戏剧包括相对较新发现的领域,尤其是戏剧WX-2。由于断层的划分,这些储层被称为致密气/低渗透率储层以及较高的初始储层压力,这些油气藏的较深储层引起了较高的结构复杂性。

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