Laboratory Experiment on Inaccessible Pore Volume of Polymer Flooding

Yiqi Zou, Zijuan Cao, Erlong Yang
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Abstract

The research on inaccessible pore volume is completed on the basis of laboratory experiments. The experiment prepared 4 different kinds of polymers, whose molecular weight are 8 million, 12 million, 16 million and 20 million whose molecular coil size are measured by light blockage counter. Through kerosene mass method we can get pore cumulative distribution of field cores and finally plot the relation between the inaccessible pore volume and molecular coil size of polymer. The size of small pore where primary water was taken as the minimum number polymer coils can be passed. Then the polymer molecular weight with better compatibility with rock pores is optimized. The study shows with the increase of polymer relative molecular mass, pore volume increased linearly. The conclusion can better guide the selection of the polymers in practical production.
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聚合物驱不可达孔隙体积的室内实验研究
不可达孔隙体积的研究是在室内实验的基础上完成的。实验制备了分子量分别为800万、1200万、1600万、2000万的4种不同的聚合物,用光阻计数器测量其分子线圈大小。通过煤油质量法可以得到野外岩心孔隙的累积分布,最后绘制出聚合物分子线圈大小与不可达孔隙体积的关系。以一次水为最小聚合物圈数的小孔隙的大小可以通过。进而优化出与岩石孔隙相容性较好的聚合物分子量。研究表明,随着聚合物相对分子质量的增加,孔隙体积呈线性增加。该结论可以更好地指导实际生产中聚合物的选择。
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