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Elemental geochemistry of the Upper Cretaceous reservoir and surrounding formations applied in geosteering of horizontal wells, Leb?da Field – Western Black Sea

机译:高层储层的元素地球化学及周边地层应用于水平井地质井,LEB?DA田 - 西黑海

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The precise landing and steering of horizontal wells using conventional mudlogging and Logging While Drilling (LWD) data is a particular challenge for the Leb?da Field, offshore Romania.The use of a new technique of elemental geochemistry analysis (or chemosteering) became an option for the identification of Cenomanian, Turonian–Coniacian–Santonian, Campanian and Eocene strata.This has enabled more accurate placement of the horizontal development wells within the desired reservoir target interval.Geochemical data enabled the identification of chemostratigraphic zones C1, C2, C3 and zone R that correspond to the reservoir section.The application is a result of the geochemical zonation performed using elements and ratios that are sensitive to depositional environment, sea level change, heavy mineral concentrations and siliciclastic input namely: Sr/Ca, Zr/Th, Si/Zr and Si/K.In ascending stratigraphic order, the ratio thresholds of zone C3 are Zr/Th > 11, Sr/Ca > 1.1, Si/Zr < 22 and Si/K < 19, while zone R corresponds to 5.5 < Zr/Th < 11, Sr/Ca < 1.1, Si/Zr > 22 and Si/K > 19.C2 zone is defined by Zr/Th < 5.5, Sr/Ca > 1.1, Si/Zr < 22 and Si/K < 19 and C1 zone is characterized by Si/Zr > 22 and Si/K > 19.The selected geochemical ratios indicate a strong geochemical zonation.In the case of offset wells, 85.9% of the data confirmed the proposed classification and 89.4% for the real-time application case.The zone R shows a strong contrast with the surrounding formations facilitating critical decisions during well placement and geosteering, increasing the reservoir exposure by 28%.The quantitative approach delivered very valuable results, providing a solid foundation to define correlation and well landing intervals.Simultaneously, the cost of the method represents a fraction of the LWD cost and 0.15% of the total project cost, making it very cost effective and a standard approach for future projects.
机译:钻井(LWD)数据的常规泥泞和伐木的精确降落和转向是钻井(LWD)数据是LEB的特殊挑战,海上罗马尼亚。使用新技术的元素地球化学分析(或Chemodeeering)成为一种选择在临曼尼亚境内的识别,坎帕尼亚 - Coniacian-Santonian,Campanian和eocene Strata。这使得在所需的储层目标间隔内能够在所需的储层目标间隔内更准确地放置水平开发井。地球化学数据使得能够识别Chemostraphicaphic区C1,C2,C3和区域r对应于储存器部分的r.应用是使用对沉积环境,海平面变化,重型矿物浓度和硅质混合输入敏感的元素和比例进行地球化学区划的结果,即:Sr / ca,Zr / th,si / Zr和Si / K.在升序地层顺序中,区C3的比率阈值是Zr / Th> 11,Sr / Ca> 1.1,Si / Zr <22和Si / K. <19,虽然区域R对应于5.5 22和Si / K> 19.C2区域由Zr / Th <5.5,Sr / Ca> 1.1定义,Si / Zr <22和Si / k <19和C1区的特征在于Si / Zr> 22和Si / k> 19.所选地球化学比率表示强烈的地球化学区划。在偏移井的情况下,85.9%该数据确认了实时申请案件的提议分类和89.4%。Z区r与周围地层具有强烈对比,促进在井放置和地统计学期间促进了关键决策,将储层暴露提高28%。定量方法送达有价值的结果,提供了一个坚实的基础,以定义相关性和良好的着陆间隔。如此,该方法的成本代表了LWD成本的一小部分,占总项目成本的0.15%,使其具有非常有效的工程和未来项目的标准方法。

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