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Hydrophilic characteristics of soft rock in deep mines 被引量:2
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作者 Guo Hongyun Li Bing +2 位作者 Zhang Yumei Wang Xinbo Zhang Feng 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2015年第2期177-183,共7页
A series of water absorption tests on dried soft rock have been conducted by the intelligent testing system for water absorption tests in deep soft rock, including tests of water absorption with and without pres- sure... A series of water absorption tests on dried soft rock have been conducted by the intelligent testing system for water absorption tests in deep soft rock, including tests of water absorption with and without pres- sure. The results show that the water absorbing capacity of rock with a certain pressure is larger than that of rock without pressure: however, the relationship between the water absorbing percentage and the time can be expressed by w(t) = a(l - e^-bt). In hi-logarithmic coordinates, the hydrophilic relationship with time in tests with pressure could be characterized by linearity, while they present concave or convex in tests without pressure. Based on the hypothesis that each influential factor is irrelevant and they have a linear correlation with the water absorbing capacity, we calculated the weight coefficient of each factor according to experimental results under different conditions. The calculations demonstrate that the effec- tive porosity, content of smectite and kaolinite are all positively correlated with the water absorption capacity of rock; meanwhile, the fractal dimension of the effective pores presents a negative correlation with the water absorption capacity of rock. The water absorption capacity with pressure increases with increasing illite, chlorite and chlorite/smectite formation and a decrease in illite/smectite formation and the fractal dimension of the effective pores, while it is opposite in tests without pressure. The weight coefficient of smectite is smallest among positive factors, and the fractal dimension of the effective pores is the smallest amongst the negative factors. 展开更多
关键词 Deep soft rock Water absorption tests Porosity Fractal dimension Clay minerals
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柴汶河袭夺地区流域地貌发育阶段研究
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作者 姜瑾斐 褚忠信 +4 位作者 朱晓洁 孙家高 于广科 姜悦 高玉花 《海洋湖沼通报》 CSCD 北大核心 2024年第1期176-181,共6页
本文基于数字高程模型和空间分析技术,对山东沂源柴汶河袭夺地区的流域地貌进行研究,划分流域地貌的发育阶段。分别计算了柴汶河源头——恶沟和沂河源头——大张庄河流域的水系分形维数、面积-高程积分和地貌信息熵并划分流域地貌发育阶... 本文基于数字高程模型和空间分析技术,对山东沂源柴汶河袭夺地区的流域地貌进行研究,划分流域地貌的发育阶段。分别计算了柴汶河源头——恶沟和沂河源头——大张庄河流域的水系分形维数、面积-高程积分和地貌信息熵并划分流域地貌发育阶段,认为面积-高程积分和地貌信息熵值的划分结果较为准确。恶沟流域处于流域地貌发育的壮年期,大张庄河流域处于老年期;河流袭夺事件使恶沟(袭夺河)侵蚀能力增强,大张庄河(被夺河)侵蚀能力减弱。 展开更多
关键词 河流袭夺 水系分形维数 面积-高程积分 地貌信息熵 流域地貌发育
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