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Lithofacies uncertainty modeling in a siliciclastic reservoir setting by incorporating geological contacts and seismic information

机译:结合地质联系和地震信息的硅质碎屑岩储层岩相不确定性建模

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Deterministic modeling lonely provides a unique boundary layout, depending on the geological interpretation or interpolation from the hard available data. Changing the interpreter’s attitude or interpolation parameters leads to displacing the location of these borders. In contrary, probabilistic modeling of geological domains such as lithofacies is a critical aspect to providing information to take proper decision in the case of evaluation of oil reservoirs parameters, that is, applicable for quantification of uncertainty along the boundaries. These stochastic modeling manifests itself dramatically beyond this occasion. Conventional approaches of probabilistic modeling (object and pixel-based) mostly suffers from consideration of contact knowledge on the simulated domains. Plurigaussian simulation algorithm, in contrast, allows reproducing the complex transitions among the lithofacies domains and has found wide acceptance for modeling petroleum reservoirs. Stationary assumption for this framework has implications on the homogeneous characterization of the lithofacies. In this case, the proportion is assumed constant and the covariance function as a typical feature of spatial continuity depends only on the Euclidean distances between two points. But, whenever there exists a heterogeneity phenomenon in the region, this assumption does not urge model to generate the desired variability of the underlying proportion of facies over the domain. Geophysical attributes as a secondary variable in this place, plays an important role for generation of the realistic contact relationship between the simulated categories. In this paper, a hierarchical plurigaussian simulation approach is used to construct multiple realizations of lithofacies by incorporating the acoustic impedance as soft data through an oil reservoir in Iran.
机译:确定性建模孤独地提供了唯一的边界布局,具体取决于地质解释或来自可用数据的插值。更改口译员的态度或内插参数会导致这些边界的位置发生位移。相反,诸如岩相的地质区域的概率模型是在评估油藏参数的情况下提供信息以做出正确决策的关键方面,即适用于沿边界的不确定性量化。这些随机建模在这种情况下会显着表现出来。概率建模的传统方法(基于对象和基于像素的方法)大多要考虑模拟域上的接触知识。相比之下,Plurigaussian模拟算法可以重现岩相域之间的复杂过渡,并且已被广泛用于石油储层建模。该框架的固定假设对岩相的均匀表征有影响。在这种情况下,假定比例为常数,协方差函数作为空间连续性的典型特征仅取决于两点之间的欧几里得距离。但是,只要在该区域中存在异质性现象,该假设就不会促使模型生成该域内相的潜在比例的理想变化。地球物理属性在这里是次要变量,对于模拟类别之间现实联系的产生起着重要作用。在本文中,通过将声阻抗作为软数据并入伊朗的一个油藏,采用分层的高斯模拟方法来构造岩相的多种实现。

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