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软土路基处理若干方案浅谈 被引量:2
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作者 吴文阁 顾凤玲 《林业科技情报》 2007年第3期121-121,123,共2页
软土路基处理应根据软土、淤泥的物理力学性质、埋层深度、材料条件、公路等因素分别采取处理措施。
关键词 软土路基 软土 淤泥 埋层深度 材料
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Estimation of correction coefficients for measured coal bed methane contents 被引量:5
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作者 Lei Bo Fu Xuehai +3 位作者 Zhou Baoyan Shen Jia ZOU Mingjun Feng Qing 《International Journal of Mining Science and Technology》 2012年第4期493-497,共5页
Improving the accuracy and precision of coal bed methane(CBM) estimates requires correction of older data from older coal exploration surveys to newer standards.Three methods,the depth gradient method,the contour aeri... Improving the accuracy and precision of coal bed methane(CBM) estimates requires correction of older data from older coal exploration surveys to newer standards.Three methods,the depth gradient method,the contour aerial weight method,and the well-point aerial weight method,were used to estimate the correction coefficient required to predict CBM gas content from coal exploration data.The data from the Nos.3 and 15 coal seams provided the coal exploration data while the CBM exploration stages within the X1 well block located in the southern part of the Qinshui Basin provided the data obtained using newer standards.The results show the correction coefficients obtained from the two aerial weight methods are similar in value but lower than the one obtained from the depth gradient method.The three methods provide similar results for the Nos.3 and 15 seams in that the correction factor is lower for the former seam.The results from the depth gradient method taken together with the coal seam burial depth and the coal rank suggest that variations in the correction factor increase linearly along with coal seam burial depth and coal rank.The correlation obtained can be applied to exploration and the evaluation of coal bed gas resources located in coalfields. 展开更多
关键词 Coal bed methaneGas contentCorrection coefficientCoal burial depthCoal rank
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CBM geology conditions study of Gemudi syncline,Western Guizhou Province
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作者 WU Cai-fang OU Zheng FENG Qing ZHANG Jie-fang 《Journal of Coal Science & Engineering(China)》 2010年第3期288-291,共4页
Through the analysis of the surrounding rock, coal seam burial depth, coal quality and hydrologic geological condition, the methane-bearing property characteristics of the coal reservoir in the Gemudi syncline were el... Through the analysis of the surrounding rock, coal seam burial depth, coal quality and hydrologic geological condition, the methane-bearing property characteristics of the coal reservoir in the Gemudi syncline were elucidated. Most of the wall rock of the coal reservoir is mudstone and silt, which is a favourable enclosing terrane. Burial depth of the main excavating coat seam is moderate. The groundwater activity is thin, and there are absolute groundwater systems between each coal seam, which make poor intercon- nections to accelerate CBM enrichment. In our research, the area coal reservoir meta- morphosis is high, CBM content is high, hole-cranny system development degree is high, and permeability of the great mass of the main coal seam exceeds 0.1×10^-3 μm2, The result demonstrates that the southeast of the Gemudi syncline has the best conditions for prospecting and exploiting CBM. 展开更多
关键词 Gemudi syncline CBM geological condition coal reservoir characteristics permeability
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