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Petrophysical characterization of a heterolithic tidal reservoir interval using a process-based modelling tool

机译:使用基于过程的建模工具对异质潮汐油藏区间进行岩石物理表征

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摘要

Heterolithic lithofacies in the Jurassic Tilje Formation, offshore mid-Norway, consist of three components – sand, silt and mud intercalated at the centimetre scale – and are generally difficult to characterize petrophysically with core and wireline data. A near-wellbore model of the lower part of the Tilje Formation in the Heidrun Field is constructed to illustrate the application of these results to formation evaluation studies. The sedimentological model is developed by detailed parameterization of a cored well interval and the petrophysical properties are based on core plug data, taking into account sampling bias and length scale. The variation in petrophysical properties as a function of sample volume is examined by calculating the representative elementary volume. The sensitivity of the representative permeability values to the contrast between the three components is studied and gives a better understanding of the flow behaviour of this system. These results are used to rescale the core plug data to a representative value and thereby quantify the uncertainty associated with the wireline-based estimates of porosity and horizontal permeability and to give an improved estimate of the kv/kh ratio.
机译:挪威中部侏罗纪Tilje组的杂岩相岩相由三部分组成-砂,粉砂和 泥浆,以厘米级插入,通常 < / sup>很难用岩心和电缆 数据来描述岩石物理特征。建立了海德润油田蒂尔杰地层下部的近井模型,以说明这些结果在地层评价研究中的应用。沉积学 模型是通过对有芯井 区间的详细参数化开发的,岩石物理性质基于岩心 塞数据,并考虑了采样偏差 通过计算代表性的基本 体积来检验岩石物理性质随样品 体积变化的变化。研究了代表性渗透率值 对三个成分之间的对比的敏感性,并且 更好地了解了该系统的流动特性。 这些结果用于将岩心塞数据重新缩放为代表性的 值,从而量化与基于 电缆的孔隙度和水平渗透率估计值相关的不确定性 并给出k v / k h 比的改进估计值。

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  • 来源
    《Petroleum Geoscience》 |2005年第1期|00000017-00000028|共12页
  • 作者单位

    Norwegian University of Science and Technology, Department of Mineral Resources and Engineering, Trondheim N-7491, Norway (Present address: Statoil Research Centre, Rotvoll, Trondheim N-7005, Norway);

    Statoil ASA, Exploration and Production, N-7501 Stj?rdal, Norway;

    Geomodeling Technology Corp., Suite 230, 633 6;

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  • 入库时间 2022-08-17 23:15:41

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