油层沥青质梯度和连通性分析、沥青质起始压力、沥青和沥青垫都可以在一个简单、统一的化学处理中处理

O. Mullins, H. Dumont, Julia C. Forsythe, Li Chen, V. Achourov, John Meyer, Y. Johansen, J. Rinna, B. Winkelman, T. Wilkinson, R. Primio, H. Elshahawi, Canas Jesus Alberto, S. Betancourt, A. Pomerantz, J. Zuo
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引用次数: 1

摘要

沥青质以3种不同的形式分散在原油中;分子、(分子的)纳米聚集体或(纳米聚集体的)团簇;这些形式被编入Yen-Mullins模型,并与原油中沥青质的溶解程度有关。许多油藏研究都用来显示原油中特定沥青质的系统行为,以及相应的沥青质(和粘度)梯度的大小。此外,沥青质的具体种类与控制沥青质起始压力(AOP)和焦油形成的化学来源有关,并取决于1)沥青质的活原油溶剂的质量和2)沥青质的浓度。油藏原油溶解气的增加会显著降低原油中沥青质的溶解能力。对于低浓度和/或良好的溶解性,沥青质以梯度小的分子形式分散在原油中(除非有较大的GOR梯度)。对于中等浓度和/或中等溶解度,沥青质以纳米聚集体的形式分散,沥青质具有中等(重力)梯度。由于沥青质浓度高或溶解性差,沥青质以梯度很大的簇状分布在储层中。根据沥青质簇状地层的来源,这些原油也可能表现出更高的沥青质起升压力和/或储层中相分离的沥青或焦油。二次充注到油藏中可以产生焦油和/或高AOP。讨论了生物降解对这些因素的影响。这里提出的系统分类有助于理解与沥青质相关的各种储层问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Asphaltene Gradients and Connectivity Analysis in Reservoirs, Asphaltene Onset Pressure, Bitumen and Tar Mats All Treated Within a Simple, Unified Chemistry Treatment
Asphaltenes can be dispersed in crude oils in 3 different forms; molecules, nanoaggregates (of molecules) or clusters (of nanoaggregates); these forms are codified in the Yen-Mullins model and relate to the extent of solvency of the asphaltenes in the crude oil. Many reservoir studies are used here to show the systematic behavior of the specific asphaltene species in crude oil and the corresponding magnitude of the asphaltene (and viscosity) gradients. In addition, the specific asphaltene species is related to the chemical origin controlling asphaltene onset pressure (AOP) and tar formation and depends on 1) the quality of the live crude oil solvent for asphaltenes and 2) the concentration of asphaltenes. Elevated quantities of solution gas of a reservoir crude oil significantly reduce the solvency of asphaltenes in crude oil. For low concentrations and/or good solvency, asphaltenes are dispersed in crude oils as molecules with small gradients (unless there are large GOR gradients). For moderate concentrations and/or moderate solubility, asphaltenes are dispersed as nanoaggregates with intermediate (gravity) gradients of asphaltenes. With large concentrations and/or poor solvency, asphaltenes are dispersed as clusters with very large gradients in reservoirs. These crude oils can also exhibit higher asphaltene onset pressures and/or phase separated bitumen or tar in the reservoir depending on the origin of asphaltene cluster formation. Secondary gas charge into oil reservoirs can yield tar and/or a high AOP. The effect of biodegradation on these factors is also discussed. The systematics presented here are helpful in understanding a variety of reservoir concerns associated with asphaltenes.
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