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Flexible Core Sample Acquisition Program for Deepwater, Offshore Brazil

机译:软核样品采集计划为深水,海上巴西

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Deepwater operations (with high rig spread rates) like those offshore Brazil require an operator to very carefullyconsider the benefit-versus-cost of a full coring acquisition program. Yet, core-based information is invaluable in theexploration phase of a field’s potential, and the basis of thoroughly understanding reservoir rock potential(petrophysics) is founded on these core measurements. With the drive for cost efficiency, conventional full-coreacquisition is often curtailed and subsurface teams must rely on percussion or rotary sidewall core samples. Thischoice is made even though it is known that for many core analysis measurements, the accuracy of the measurementis directly proportional to the pore volume. A new rotary sidewall coring technology applicable for deepwater environments has been applied offshore Brazil thatenables the recovery of more than three times the core volume when compared to cores recovered with standardrotary coring tools. The resulting increase in pore volume positively impacts the accuracy of the core porositymeasurement and other measurements that depend on pore volume (e.g., capillary pressure, water saturation, andSCAL measurements, in general). Recovery of up to 60 samples during a single trip in the well is achievable, enablinga good lithology sample spread in one acquisition. Acquisition time per core is more than three times faster that of theprevious-generation rotary coring tools, resulting in significant reduction of coring time, especially for offshoreoperations. Coupled with a new bit design, optimized to take advantage of the increased rotational speed, cores canbe cut at even higher levels of overbalance pressure (> 1,000 psi [6.89 MPa], depending on porosity and permeability).The ability to take up to 60 larger-volume cores in one run provides operators, like those in deepwater operations ofBrazil, the flexibility to continue to vary the design of core acquisition programs to meet the benefit-versus-costdilemma of full-core acquisition. They also enable much better contingency data gathering if full-core programs are notsuccessful.
机译:深水操作(具有高钻机扩展率),如海上巴西要求运营商非常小心地提供完整的取芯采集计划的益处与成本。然而,基于核心的信息在场潜力的拨模阶段中非常宝贵,并且彻底了解储层岩石潜力(岩石物理学)的基础是在这些核心测量上的基础上。随着成本效率的驱动,常规的全轴承率通常被缩减,并且地下队伍必须依赖打击乐或旋转侧壁芯样品。即使已知对于许多核心分析测量,也是如此,对于许多核心分析测量,测量的准确性与孔体积成正比成比例。新的旋转式井壁取芯适用于深水环境技术已经被应用于近海相比时,内核恢复与standardrotary取心工具巴西thatenables三倍以上的核心卷的恢复。由此产生的孔体积的增加积极地影响核心孔隙率的准确性和依赖于孔体积的其他测量(例如,毛细管压力,水饱和度,以及ANDSCAL测量)。在井中的一次旅行中恢复最多60个样本是可实现的,使得能够在一次采集中传播良好的岩性样本。每个核心的采集时间比Pruvious-Digrase的旋转芯工具更快的三倍以上,导致取芯时间显着降低,特别是用于审计期。再加上一种新的位设计,优化了利用增加的转速,核心可以在甚至更高的过分价力(> 1,000psi [6.89MPa]的情况下切割,这取决于孔隙率和渗透率)。最多可达60的能力一个运行中的大容量核心提供了运营商,如沿布拉西的深水操作中的操作员,可以灵活地改变核心采集计划的设计,以满足全核收购的福利 - vievIlemma。如果全部核心计划不属于核心,他们还能实现更好的应急数据收集。

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