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Development of GeneralizedCorrelations for ThermophysicalProperties of Light Hydrocarbon Solvents (C1–C5)/Bitumen Systems Using Genetic Programming

机译:广义的发展热物理相关性遗传编程的轻烃溶剂(C1-C5)/双峰系统的性质

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摘要

Accurate modeling of thermophysical properties of solvent/bitumen mixtures is critical for proper design and implementation of thermal- and solvent-based bitumen recovery processes. In this study, three generalized correlations were developed for prediction of solubility, density, and viscosity of light hydrocarbon/bitumen mixtures. The generalized correlations were developed using symbolic regression based on genetic programming and employing a 10-year set of comprehensive phase behavior experimental studies conducted under the SHARP research program on solvent-aided thermal recovery of bitumen. The data set comprised Surmont, JACOS, Mackay River, and Cold Lake bitumen samples and five light hydrocarbon solvents including methane, ethane, propane, n-butane, and n-pentane. The developed correlations are valid for gaseous solvents. Finally, the developed correlations for solubility, density, and viscosity were validated against a large data set of experimental measurements collected from the literature. The validation demonstrates that the developed correlations are able to accurately predict the available experimental data ofsolubility, density, and viscosity reported in the literature.
机译:溶剂/沥青混合物的热物理性质的准确建模对于正确设计和实施基于热和溶剂的沥青回收工艺至关重要。在这项研究中,开发了三种广义相关性以预测轻质烃/沥青混合物的溶解度,密度和粘度。使用基于遗传程序的符号回归并在SHARP研究计划下进行的为期10年的综合相行为实验研究组开发了相关性,以研究溶剂辅助的沥青热回收。数据集包括Surmont,JACOS,Mackay River和Cold Lake沥青样品以及五种轻烃溶剂,包括甲烷,乙烷,丙烷,正丁烷和正戊烷。所建立的相关性对气态溶剂有效。最后,针对大量从文献收集的实验测量数据验证了溶解度,密度和粘度的相关性。验证表明,所开发的相关性能够准确预测可得的实验数据文献中报道了溶解度,密度和粘度。

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