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Middle Bakken wettability evaluation using NMR T2 forward modeling and mineralogy.

机译:使用NMR T2正演模型和矿物学评估中巴肯的润湿性。

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摘要

Determination of the wettability of rocks is one of the crucial elements in reservoir characterization. It affects the recovery efficiency, relative permeability, and volumetric reserves calculations. Assuming wrong wetting conditions may result in inaccurate reserves estimation and could be detrimental to improved and enhanced hydrocarbon recovery processes.;There are several conventional methods based on fluid displacement, such as USBM and Amott-Harvey, to determine wettability indices. However, these methods are time-consuming and expensive in tight unconventional reservoir core plugs. The approach developed by Looyestijn and Hofman (2005) was applied to determine a wettability index of preserved Middle Bakken core plugs using Nuclear Magnetic Resonance (NMR) transverse relaxation time (T2) data. In addition, a new simple approach was developed to predict likelihood wettability indices using the mineralogical content from X-ray Diffraction (XRD) data.;The overall goal of computing wettability index (WI) is to identify ways in which we can significantly reduce the amount of time and cost of developing a representative wettability index in preserved Middle Bakken plugs, without changing the preserved state of the core. The main assumption in our approach is that cleaned, adjacent core properties are representative of the preserved core properties, such as helium connected porosity, absolute air permeability, Dean Stark saturation, mineralogy, etc. NMR T2 measurements in the adjacent, cleaned plugs were measured to develop the pore size distribution that is representative of the preserved plugs. To determine NMR wettability indices of the preserved Middle Bakken plugs, T2 relaxation measurements of preserved, and cleaned adjacent brine saturated plugs, bulk produced brine and oil under ambient conditions are used in the Looyestijn and Hofman (2005) NMR forward model. From NMR forward modeling, it is concluded that the preserved Middle Bakken plugs appear to be intermediate to fairly oil-wet. NMR wettability indices vary between -0.04 and -0.54. Also, to predict the wettability indices of the Middle Bakken plugs, a very simple approach based on previously published contact angle measurements on polished carbonate and silicate mineral surfaces was developed. Our results from this analysis conclude that the given plugs are likely oil-wet. Predicted likelihood wettability indices vary between -0.08 and -0.64. Likelihood wettability indices were matched with NMR wettability indices. The significance of this research study is to reduce time and cost in determining the wetted state.
机译:确定岩石的润湿性是表征储层的关键因素之一。它影响采收率,相对渗透率和体积储量计算。假设错误的润湿条件可能导致不准确的储量估算,并且可能不利于改进和增强油气采收率。然而,在紧密的非常规储层岩心塞中,这些方法既费时又昂贵。使用Looyestijn和Hofman(2005)开发的方法,使用核磁共振(NMR)横向弛豫时间(T2)数据确定保留的中Bakken岩心塞的润湿指数。此外,还开发了一种新的简单方法来利用X射线衍射(XRD)数据中的矿物学含量来预测似然性润湿指数。;计算润湿指数(WI)的总体目标是确定可以显着降低润湿系数的方法。在不改变岩心的保留状态的情况下,在保留的巴肯中栓上形成代表性的润湿性指数所需的时间和成本。我们方法中的主要假设是,清洁的邻近岩心特性代表了保留的岩心特性,例如氦气连接的孔隙率,绝对空气渗透率,迪安·史塔克饱和度,矿物学等。测量了邻近的清洁岩心中的NMR T2测量值形成代表保存的塞子的孔径分布。为了确定保留的中Bakken岩心的NMR润湿性指数,在Looyestijn和Hofman(2005)NMR正演模型中使用了在环境条件下保留的和清洁的相邻盐水饱和岩心,散装生产的盐水和石油的T2弛豫测量。从NMR正演模型得出的结论是,保留的中巴肯岩栓似乎处于相当油湿的中间。 NMR润湿指数在-0.04至-0.54之间变化。另外,为了预测中巴肯塞的润湿性指数,开发了一种非常简单的方法,该方法基于先前公布的在抛光碳酸盐和硅酸盐矿物表面上的接触角测量结果。我们从该分析得出的结果得出结论,给定的堵塞可能是油湿的。预测的可能性润湿性指数在-0.08至-0.64之间变化。可能性润湿性指数与NMR润湿性指数相匹配。这项研究的意义在于减少确定润湿状态的时间和成本。

著录项

  • 作者

    Kerimov, Abdulla.;

  • 作者单位

    Colorado School of Mines.;

  • 授予单位 Colorado School of Mines.;
  • 学科 Engineering Petroleum.
  • 学位 M.S.
  • 年度 2014
  • 页码 155 p.
  • 总页数 155
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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