Recent rock mechanics developments in the petroleum industry
Последние достижения механики горных пород в нефтяной промышленности
2026-02-18
SCID: 54.1/e57chv4m
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borehole failurepetroleum industryrock mechanicssand productionsurface subsidence
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Abstract (AI)
In much the same way as rock mechanics started to bloom in geotechnical engineering after catastrophes such as Malpasset and Vaiont, the petroleum industry started to respect rock mechanics after rather expensive mishaps. Boreholes failing during drilling or production, formation sand production, surface subsidence leading to casing failures, etc. all represent reactions of the rock mass to engineers’ intrusion. As a result of these and other seemingly increasing problems, the exploration and development sectors felt obliged to address the issue and over the past two decades have expanded considerable efforts towards obtaining a better understanding of the fundamental mechanisms governing rock behavior. This keynote address briefly reviews some of the recent advances: Wherever possible, practical implications are discussed in an attempt to outline the importance of some of these developments.
Key Findings
1
Expensive petroleum-industry failures—including borehole instability, formation sand production, and subsidence-related casing failures—demonstrated the need for rock-mechanics analysis.
2
Over the past two decades, petroleum exploration and development sectors substantially increased efforts to understand the fundamental mechanisms governing rock behavior.
3
Recent rock-mechanics advances have practical implications for managing failures caused by engineering intrusion into rock masses during petroleum operations.
4
The address reviews developments across petroleum rock mechanics, emphasizing their relevance to drilling, production, and reservoir-surface stability.
Research Object
rock masses in petroleum-industry operations, including boreholes, formations, and subsurface formations affected by drilling and production
Research Subject
fundamental mechanisms governing rock behavior and associated failure phenomena, including borehole failure, formation sand production, and surface subsidence causing casing failures
Publication Details
Publication Date
2026-02-18
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