岩石物理学
地质学
致密气
天然气
石油工程
水力压裂
多孔性
磁导率
岩石学
脆性
钻探
断裂(地质)
非常规油
天然气田
岩土工程
油页岩
古生物学
材料科学
化学
膜
冶金
复合材料
有机化学
生物
遗传学
作者
Bill Goodway,Marco A. Pérez,John L. Varsek,Christian Abaco
出处
期刊:The leading edge
[Society of Exploration Geophysicists]
日期:2010-12-01
卷期号:29 (12): 1500-1508
被引量:191
摘要
Exploration and drilling for natural gas in North America has moved radically away from conventional reservoirs to focus on unconventional reservoirs such as tight gas sands and shales. These reservoirs have low porosity and near-zero permeability with gas stored in natural fractures and within the matrix porosity. Economic gas production requires hydraulic fracture stimulation to open connections to existing natural fractures or matrix porosity, and successful stimulation depends on the formation's geomechanical brittleness being capable of supporting extensive induced fractures. However, despite adequate stimulation, significant variations exist between wells in expected ultimate recovery (EUR) due to the heterogeneity of these resource plays. Consequently, predicting natural fractures or fracture-prone “sweet spots” is essential to optimize development of such plays.
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