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Thermodynamics of Hydrocarbon Solvents at the Pore Scale During Hybrid Solvent-Thermal Application for Heavy-Oil Recovery

机译:杂交溶剂热应用孔隙率碳氢化合物溶剂热力学,重质储存

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Phase behavior of fluids at capillary conditions differs from that in bulk media. Therefore, understanding the thermodynamics of solvents in confined media is essential for modeling thermal EOR applications. The Thomson equation states that pore sizes have a control on boiling points of liquids in capillary channels. As pore spaces become smaller, boiling points become lower than normal boiling temperatures of the same liquids. The target of this paper is to inspect this phenomenon by physically measuring the boiling points of several solvents and compare them with the calculated boiling temperatures for different capillary structures. Furthermore, the feasibility and accuracy of the Thomson equation is investigated to check its applicability in heavy-oil recovery modelling. To do so, Hele-Shaw cells with several gap thicknesses (0.04, 0.45, 1.02, and 12 mm) are used to measure the boiling points of heptane, heptane-decane mixture, and naphtha. Experiments are repeated for the same solvents on homogeneous and heterogeneous micromodels to observe the phase behavior in a more realistic porous medium. Finally, the effect of surface wettability on boiling temperatures is examined in Hele-Shaw and micromodel experiments.
机译:毛细管条件下的液体的相位行为与散装介质不同。因此,了解限制介质中溶剂的热力学对于建模热EOR应用是必不可少的。汤姆森方程指出孔径尺寸对毛细管通道中液体的沸点进行了控制。由于孔隙空间变小,沸点变得低于相同液体的正常沸腾温度。本文的目标是通过物理测量几种溶剂的沸点并将它们与不同毛细管结构的沸腾温度进行比较来检查这种现象。此外,研究了汤姆森方程的可行性和准确性,以检查其在重油恢复建模中的适用性。为此,使用具有多个间隙厚度(0.04,0.45,1.02和12mm)的Hele-Shaw细胞来测量庚烷,庚烷 - 癸烷混合物和石脑油的沸点。对均匀和异质微模的相同溶剂重复实验,以观察更现实的多孔介质中的相行为。最后,在Hele-Shaw和MicroModel实验中检查了表面润湿性对沸腾温度的影响。

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