用斧头和矢量驯服雷马

B. Ruehlicke, A. Uhrin, Z. Veselovský, M. Schlaich
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引用次数: 0

摘要

雷马油田的目标是中中新世深水浊积岩储层。尽管储量丰富,但厚度为~180 m、部分汞化的储层砂岩的作图具有挑战性。盐构造的存在降低了地震质量。盐覆盖层和高地层压力要求使用重泥浆和油基钻井液,这限制了井眼图像测井(BHI)的分辨率和解释潜力。盐动力运动使本已复杂的重力驱动沉积叠加发生了显著的沉积后变形,使储层向东西向的盐壁垂盖。因此,构造倾角分量的评价和去除并非易事,古输运方向的评价也比未受扰动的深水储层复杂得多。本文的目的是将Henry等人(2018)的主要结果与Ruehlicke等人(2019)的特征向量方法结合起来,并强调其对储层表征的价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
TAMING THE THUNDER HORSE WITH AXES AND VECTORS
The Thunder Horse Field targets Middle Miocene deepwater turbiditic reservoirs. Despite of being prolific, the mapping of the ~180 m thick, partly amalgamated reservoir sandstones is challenging. Seismic quality is reduced by the presence of salt structures. The salt overburden and high formation pressure requires the use of heavy mud weights and oil-based drilling fluids, which limit the resolution and interpretation potential of borehole image logs (BHI). Halokinetic movements caused significant post-depositional deformation of the already complex gravity- driven sediment stack and the reservoir beds drape against an E–W oriented salt wall. Consequently, the assessment and removal of the structural dip component is not trivial and the evaluation of paleo-transport directions is considerably more complicated compared to undisturbed deepwater reservoirs. The intention of this paper is to bring the main results from Henry et al. (2018) into context with the eigenvector methodology from Ruehlicke et al. (2019) and to emphasize its value for reservoir characterization.
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