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河北平原区地震监测井成井技术 被引量:3
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作者 常林祯 杨永明 +2 位作者 景龙 王涛 李忠 《探矿工程(岩土钻掘工程)》 2008年第10期4-6,10,共4页
井下地震监测可减少地面噪声干扰、提高地震监测精度。介绍了河北平原区地震监测井的设计以及成井、下管、固井等的关键工艺方法,在工程施工中采用合理的成井工艺、封底下管、管外固井等技术,满足了监测井的特殊要求。
关键词 地震监测井 结构 下管
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天山地区地震监测井(泉)水文地球化学特征 被引量:3
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作者 李娜 高小其 向阳 《内陆地震》 2023年第1期32-43,共12页
为研究天山地区地震监测井(泉)地下水化学特征,系统采集了20个天山断裂带地震监测点地下水化学样品,综合运用氢氧同位素、Gibbs图、离子比值、Piper三线图、Na-K-Mg三角图和舒卡列夫分类等方法探讨了监测点的水化学及水文地球化学特征... 为研究天山地区地震监测井(泉)地下水化学特征,系统采集了20个天山断裂带地震监测点地下水化学样品,综合运用氢氧同位素、Gibbs图、离子比值、Piper三线图、Na-K-Mg三角图和舒卡列夫分类等方法探讨了监测点的水化学及水文地球化学特征。结果如下:(1)天山地区地震监测井(泉)水中主导阳离子为Na^(+),阴离子分别为HCO_(3)^(-)、SO_(4)^(2-)和Cl^(-),TDS介于249.9~10272.3 mg·L^(-1)之间,多数为淡水。(2)δD、δ^(18)O结果表明天山地区地震监测井(泉)水主要来源于大气降水。Gibbs图表明研究区监测点地下水元素主要受岩石溶滤控制,南天山和乌鲁木齐监测点地下水受到一定蒸发浓缩控制。离子比值显示碳酸盐和硫酸盐矿物溶解是控制地下水主要离子组分主要因素。(3)Na-K-Mg三角图表明天山地区地震监测井(泉)水多数为“部分平衡水”,部分为“未成熟水”,水-岩反应处于较为活跃的程度,有利于孕震信息的传递,适合作为地震监测点。 展开更多
关键词 天山地区 地震监测井(泉) 水文地球化学 氢氧同位素 离子比值
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Effect analysis of borehole microseismic monitoring technology on shale gas fracturing in western Hubei 被引量:2
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作者 Li Juan Yu Bing-Song +3 位作者 Tian Yu-Kun Kang Hai-Xia Wang Yu-Fang Zhou Hui 《Applied Geophysics》 SCIE CSCD 2020年第5期764-775,902,共13页
Hydraulic fracturing technology is an important means of shale gas development,and microseismic monitoring is the key technology of fracturing effect evaluation.In this study,hydraulic fracturing and microseismic moni... Hydraulic fracturing technology is an important means of shale gas development,and microseismic monitoring is the key technology of fracturing effect evaluation.In this study,hydraulic fracturing and microseismic monitoring were simultaneously conducted in the Eyangye 2HF well(hereinafter referred to as EYY2HF well).The target stratum of this well is the second member of the Doushantuo Formation of the Sinian System,which is the oldest stratum of horizontal shale gas wells in the world.A total of 4341 microseismic fracturing events were identified,and 23 fracturing stages of the well were defined.The fluctuation of the number of events showed a repeating“high-low”pattern,and the average energy of these events showed minimal differences.These findings indicate that the water pressure required for the reconstruction of the EYY2HF well is appropriate.The main body of the fracture network extended from northwest to southeast,consistent with the interpretation of regional geological and seismic data.The stimulated rock volumes showed a linear increase with the increase of the fracturing stage.Some technological measures,such as quick lift displacement,quick lift sand ratio,and pump stop for secondary sand addition,were adopted during fracturing to increase the complexity of the fracture network.Microseismic fracture monitoring of the well achieved expected eff ects and guided real-time fracturing operations and fracturing eff ect evaluation. 展开更多
关键词 microseismic technology borehole monitoring hydraulic fracturing shale gas western Hubei Province
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