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Geologically Consistent History Matching of SAGD Process Using Probability Perturbation Method

机译:利用概率扰动方法,SAGD过程的地质上一致历史匹配

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The overall objective of reservoir modeling is to reduce the uncertainty in production forecasts by utilizing all available data to construct a calibrated reservoir model. Geological heterogeneities have a fundamental impact on the growth of a steam chamber and the performance of a SAGD (steam assisted gravity drainage) process. The objective of this work is to incorporate geological heterogeneities into the history matching process using a probability perturbation method (PPM) to preserve the geological consistency of a reservoir model. A PPM is a geological data integration framework which employs a multiple-point geostatistics (MPS) algorithm. The heart of this method is to systematically perturb the underlying probabilities used to generate the reservoir facies. A PPM generally consists of two loops: an outer loop which is responsible for randomly generating a global configuration of the facies and an inner loop which systematically perturbs the generated facies to match the dynamic data. The combination of these two iterations creates a set of realizations that preserve the geological information. In this paper, a training image is built based on a 3D outcrop description of a meandering channelized reservoir that is analogous to some of the Canadian heavy oil reservoirs. All other available data including reservoir properties at well locations, trends and production data are also incorporated into the PPM framework for this history matching process. The reservoir model is characterized by three facies: clean sands, medium-grained sandstones and silts, which have different porosity, horizontal permeability and vertical permeability. The SAGD performance is a function of steam chamber development, which depends on the level of heterogeneity in the reservoir. The results show that the heterogeneity distribution has a large impact on the fluid flow at different stages of production. The results show that such complexities can be well preserved during the history matching process using the PPM by generating the geological patterns depicted in a training image. The PPM is shown to be an efficient approach for history matching in presence of complex reservoir geology.
机译:储层建模的总体目标是通过利用所有可用数据来构建校准的储层模型来减少生产预测的不确定性。地质异质性对蒸汽室的生长和SAGD(蒸汽辅助重力排水)过程的性能产生根本影响。本作品的目的是使用概率扰动方法(PPM)将地质异质性纳入历史匹配过程中以保持储层模型的地质一致性。 PPM是一个地质数据集成框架,采用多点地稳稳态(MPS)算法。这种方法的核心是系统地扰乱用于产生储存器相的潜在概率。 PPM通常由两个环组成:一个外环,该外环负责随机地生成相片的全局配置和系统地覆盖所生成的相匹配动态数据的内部环路。这两个迭代的组合创建了一组保护地质信息的一套实现。在本文中,基于蜿蜒的通道储层的3D露天描述构建训练图像,这些储层类似于一些加拿大重油储存器。包括井位置,趋势和生产数据的储层属性的所有其他可用数据也被纳入了该历史匹配过程的PPM框架中。储层模型的特点是三个相:清洁砂,中粒砂岩和淤泥,具有不同的孔隙率,水平渗透性和垂直渗透性。 SAGD性能是蒸汽室开发的函数,这取决于储层中的异质性水平。结果表明,异质性分布对不同生产阶段的流体流产生了大的影响。结果表明,通过在训练图像中所示的地质模式产生PPM,在历史匹配过程中可以保存这种复杂性可以很好地保存。 PPM被证明是在存在复杂的储层地质存在下历史匹配的有效方法。

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