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首页> 外文期刊>Transport in Porous Media >Analytical and Experimental Study to Predict the Residual Resistance Factor on Polymer Flooding Process in Fractured Medium
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Analytical and Experimental Study to Predict the Residual Resistance Factor on Polymer Flooding Process in Fractured Medium

机译:预测破裂介质中聚合物驱过程残余阻力因子的分析和实验研究

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摘要

The major objectives of this study are to analytically and experimentally determine the residual resistance factor in the fractured medium based on the polymer solution properties and operational conditions. The parameters considered in this study are the polymer concentration, power law constitutive equation parameter, and salt concentration, sulfonation content of polymer, temperature, and molecular weight of the water soluble polymers which are used in polymer flooding for enhanced oil recovery. The results indicated that residual resistance factor in fractured medium is dependent on the coil overlap parameter and power law equation parameter of polymer. The coil overlap parameter is a dimensionless number consists of intrinsic viscosity and polymer concentration. Since intrinsic viscosity is a function of polymer diameter in medium conditions, to predict the residual resistance factor in fracture medium, an experimental correlation is generated for determination of the molecular diameter of polymer based on polymer molecular weight, temperature, salt concentration, and sulfonation content.
机译:这项研究的主要目的是根据聚合物溶液的性质和操作条件,通过分析和实验确定残余介质中的残余阻力系数。在这项研究中考虑的参数是聚合物浓度,幂律本构方程参数以及盐浓度,聚合物的磺化含量,温度和水溶性聚合物的分子量,这些聚合物用于提高驱油能力。结果表明,裂缝介质中的残余电阻系数取决于聚合物的线圈重叠参数和幂律方程参数。线圈重叠参数是由固有粘度和聚合物浓度组成的无量纲数。由于特性粘度是介质条件下聚合物直径的函数,因此要预测裂缝介质中的残余阻力因子,将根据聚合物分子量,温度,盐浓度和磺化含量生成实验相关性以确定聚合物的分子直径。

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