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Creating Extensive and Complex Fracture Networks for Enhanced Geothermal Systems: An Overview of Oilfield Stimulation and Diversion Techniques

Weijers, Leen; Van Dyke, Peter Erik; Robertson-Tait, Ann

Key words
Enhanced Geothermal Systems; Diversion, EGS, engineered, enhanced fracture, fracturing, gas, geothermal, hydraulic, isolation, network, oil, oilfield, reservoir, stimulation, well
Conference
Geothermal Resources Council Transactions
Year
2006
Session
HDR/EGS; Hydraulic fracturing
Language
English

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Abstract

The extraction of geothermal energy is typically achieved using long open hole intervals in an attempt to connect the well with the largest possible rock mass. For the development of enhanced or engineered geothermal systems (EGS), uniform hydraulic stimulation throughout the open hole interval presents a challenging problem. Fracturing fluids are often injected into only a fraction of the target zone, which reduces the efficiency of heat transfer and thus increases the cost of energy. Consequently, to create extensive and complex fracture networks, effective stimulation and diversion is needed. This paper provides an overview of techniques that are commonly used in the oilfield, and evaluates their effectiveness in improving stimulations of EGS wells.

Copyright 2006, Geothermal Resources Council. Readers who download papers from this site should honour the copyright of the original authors, and may not copy or distribute the work further without the permission of the original publisher.

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