Petroleum Science > 2013(3 ) :363-375 DOI:
The tectonic fracture modeling of an ultra-low permeability sandstone reservoir based on an outcrop analogy: A case study in the Wangyao Oilfield of Ordos Basin, China Open Access
文章信息
作者:Ultra-low permeability sandstone, tectonic fracture modeling, outcrop analog, subsurface reservoir, 3D modeling
作者单位:Zhao Xiaoming,Liu Li,Hu Jialiang,Zhou Xiaojun and Li MinKey Laboratory of Natural Gas Geology of Sichuan Province, Southwest Petroleum University, Sichuan 610500, China School of Geoscience and Technology, Southwest Petroleum University, Sichuan 610500, China;Key Laboratory of Natural Gas Geology of Sichuan Province, Southwest Petroleum University, Sichuan 610500, China;Abu Dhabi National Oil Company, Abu Dhabi 898, United Arab Emirates;Key Laboratory of Natural Gas Geology of Sichuan Province, Southwest Petroleum University, Sichuan 610500, China;State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University, Sichuan 610500, China
收稿日期:
出版日期:2013-06-24 00:00:00.0
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文章摘要
Due to inherent limits of data acquisition and geophysical data resolution, there are large uncertainties in the characterization of subsurface fractures. However, outcrop analogies can provide qualitative and quantitative information on a large number of fractures, based on which the accuracy of subsurface fracture characterization can be improved. Here we take the tectonic fracture modeling of an ultra-low permeability sandstone reservoir based on an outcrop analogy, a case study of the Chang611 Formation of the Upper Triassic Yanchang Group of the Wangyao Oilfield in the Ordos Basin of China. An outcrop at the edge of the basin is a suitable analog for the reservoir, but the prerequisite is that they must have equivalent previous stress fields, similar final structural characteristics, relative timing and an identical depositional environment and diagenesis. The relationship among fracture density, rock type and bed thickness based on the outcrop is one of the most important fracture distribution models, and can be used to interpret fracture density in individual wells quantitatively. Fracture orientation, dip, geometry and scale, also should be described and measured in the outcrop, and can be used together with structure restoration and single well fracture density interpretation to guide fracture intensity prediction on bed surfaces and to constrain the construction of the 3D fracture geometry model of the subsurface reservoir. The application of the above principles shows the outcrop-based tectonic fracture models of the target ultra-low permeability sandstone reservoir are consistent with fractures inferred from microseismic interpretation and tracer tests. This illustrated that the fracture modeling based on the outcrop analogy is reliable and can reduce the uncertainty in stochastic fracture modeling.
英文关键词
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Ultra-low permeability sandstone, tectonic fracture modeling, outcrop analog, subsurface reservoir, 3D modeling