Experiment and Discovery on Permeability Improved Technology of Coal Reservoir Based on Repeated Strong Pulse Waves of High Energy Accumulation
QIN Yong
QIU Aici
ZHANG Yongmin
Abstract:A coal reservoir excitation by the repeated strong pulse waves of high energy accumulation was an originality new technology developed by Chinese scientists based on the principle of the nuclear explosion shock wave.The discovery of the preliminary work showed the permeability improved feasibility and availability of the coal reservoir.But the basis study lagged behind the engineering discovery and the further research and development and the promoted application of the technology were urgently needed to make a breakthrough at the bottleneck of the basis study.Faced to the major technical requirement of the high efficient economic development of the coalbed methane in China,the paper analyzed the study status on the shock wave fracturing and permeability improved field of the coal reservoir,stated the basic principle of the coal reservoir fracturing and permeability improved with the repeated strong pulse wave of the high energy accumulation,summarized the preliminary site experiment of the technology and the engineering discovery effect,and refined the scientific problems to be solved along the direction.The paper discussed the breaking dynamics features of the coal reservoir and the coupling role mechanism of the geological and engineering factors under the guidance of the repeated strong pulse waves of the high energy accumulation,in detail explained the key scientific problem of the wave-flow-coal interreaction under the guidance of the repeated pulse waves,which would be the most important basis to further research and development and to improve and apply the permeability improved technology of the coal reservoir.
Keywords:electric pulseshock wavecoalbed methanereservoir excitationfracturingpermeability improved
Publication Date:2014-01-01
Online Publishing Date:2025-08-15(First online date of this platform, not the publication date of the document)
Pages:8( 1-7,70 )
