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首页> 外文期刊>Earth-Science Reviews: The International Geological Journal Bridging the Gap between Research Articles and Textbooks >Continuous hydrocarbon accumulation over a large area as a distinguishing characteristic of unconventional petroleum: The Ordos Basin, North-Central China
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Continuous hydrocarbon accumulation over a large area as a distinguishing characteristic of unconventional petroleum: The Ordos Basin, North-Central China

机译:大面积连续油气成藏是非常规石油的显着特征:中国中部鄂尔多斯盆地

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摘要

Global petroleum exploration is currently undergoing a strategic shift from conventional to unconventional hydrocarbon resources. Unconventional hydrocarbons in tight reservoirs show characteristics distinct from those of conventional hydrocarbon sources hosted in structural and stratigraphic traps. The characteristic features include the following: a hydrocarbon source and reservoir coexist; porosity and permeability are ultra-low; nano-pore throats are widely distributed; hydrocarbon-bearing reservoir bodies are continuously distributed; there is no obvious trap boundary; buoyancy and hydrodynamics have only a minor effect, and Darcy's law does not apply; phase separation is poor; there is no uniform oil-gas-water interface or pressure system; and oil or gas saturation varies. Examples of unconventional hydrocarbon accumulations are the Mesozoic tight sandstone oil province and the Upper Paleozoic tight sandstone gas province in the Ordos Basin, north-central China. Generally, continuous hydrocarbon accumulation over a large area is a distinguishing characteristic of unconventional hydrocarbon sources. Because of the great potential of unconventional petroleum resources, it is believed that research on such resources will be at the forefront of the future development of petroleum geology.
机译:当前,全球石油勘探正在经历从常规碳氢化合物资源到非常规碳氢化合物资源的战略转变。致密油藏中的非常规油气表现出的特征不同于构造和地层圈闭中的常规油气源。其特征包括:烃源与油藏共存;孔隙率和渗透率极低;纳米孔喉广泛分布。含烃储层主体是连续分布的;没有明显的陷阱边界;浮力和流体动力学的影响很小,达西定律不适用;相分离差;没有统一的油气水界面或压力系统;石油或天然气的饱和度会有所不同。非常规油气成藏的例子是中北部鄂尔多斯盆地的中生代致密砂岩油省和上古生界致密砂岩气省。通常,大面积连续油气成藏是非常规油气源的显着特征。由于非常规石油资源的巨大潜力,人们认为,对这类资源的研究将是石油地质学未来发展的前沿。

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