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钻孔注水-注液氮冷裂增透煤的数学模型研究 被引量:6
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作者 张春会 徐刚 +3 位作者 于永江 李和万 王锡朝 王来贵 《煤炭科学技术》 CAS CSCD 北大核心 2019年第1期139-144,共6页
为确定贫水煤层钻孔注水-注液氮增透煤层技术方法的设计技术参数,建立了钻孔注水润湿数学模型,提出了注水时间和润湿半径的计算公式;基于热力学理论,建立了钻孔煤注液氮冷裂增透模型,给出了注液氮冷冻煤层的温度场演化解析解,给出了煤... 为确定贫水煤层钻孔注水-注液氮增透煤层技术方法的设计技术参数,建立了钻孔注水润湿数学模型,提出了注水时间和润湿半径的计算公式;基于热力学理论,建立了钻孔煤注液氮冷裂增透模型,给出了注液氮冷冻煤层的温度场演化解析解,给出了煤层注液氮冷裂增透半径计算公式。利用建立的模型分析了影响煤层工作面钻孔注水-注液氮技术方法效果的因素和规律,结果表明:注水压力8 MPa、储层压力1.1 MPa下,注水8.7 h,注水润湿半径可达1.2 m;液氮冷冻时间增加,冷裂增透半径增大,但增长速率减小;液氮冷冻240 h后,再增加冷冻时间,冷裂增透半径基本不变;液氮冷裂增透180 h,冷裂增透半径为1.2 m,研究为贫水煤层注液氮冷裂增透工程设计提供了指导。 展开更多
关键词 注水 液氮冷裂 临界饱水度 增透 温度场演化
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Fracture evolution in coalbed methane reservoirs subjected to liquid nitrogen thermal shocking 被引量:3
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作者 YAN Hong TIAN Li-peng +3 位作者 FENG Rui-min Hani MITRI CHEN Jun-zhi ZHANG Bo 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第6期1846-1860,共15页
Thermal shocking effect occurs when the coalbed methane(CBM)reservoirs meet liquid nitrogen(LN2)of extremely low temperature.In this study,3D via X-ray microcomputer tomography(μCT)and scanning electron microscope(SE... Thermal shocking effect occurs when the coalbed methane(CBM)reservoirs meet liquid nitrogen(LN2)of extremely low temperature.In this study,3D via X-ray microcomputer tomography(μCT)and scanning electron microscope(SEM)are employed to visualize and quantify morphological evolution characteristics of fractures in coal after LN2 thermal shocking treatments.LN2 thermal shocking leads to a denser fracture network than its original state with coal porosity growth rate increasing up to 183.3%.The surface porosity of theμCT scanned layers inside the coal specimen is influenced by LN2 thermal shocking which rises from 18.76%to 215.11%,illustrating the deformation heterogeneity of coal after LN2 thermal shocking.The cracking effect of LN2 thermal shocking on the surface of low porosity is generally more effective than that of high surface porosity,indicating the applicability of LN2 thermal shocking on low-permeability CBM reservoir stimulation.The characteristics of SEM scanned coal matrix in the coal powder and the coal block after the LN2 thermal shocking presented a large amount of deep and shallow progressive scratch layers,fracture variation diversity(i.e.extension,propagation,connectivity,irregularity)on the surface of the coal block and these were the main reasons leading to the decrease of the uniaxial compressive strength of the coal specimen. 展开更多
关键词 liquid nitrogen thermal shocking coalbed methane micro fracture 3D via X-ray microcomputed tomography
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