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对油娄山水库工程不合理性的思考
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作者 杜宏伟 《科技情报开发与经济》 2010年第14期178-179,共2页
对拟建的油娄山水库工程的不合理性进行了分析,包括滹沱河灌区的用水权难以保障、水资源开发配置不合理、滹沱河污染将进一步加剧、忻定盆地的地下水漏斗将迅速扩大等,在此基础上得出了该工程不宜立项的结论。
关键词 水资源开发 油娄山水库工程 不合理性分析
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煤自燃倾向性检定方法不合理分析
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作者 卢伟琳 曾辉 《低碳世界》 2014年第5期136-137,共2页
了解和评价了当今全世界主要采煤国家采用的煤自燃倾向性测试的方法。从煤自燃的基本机理或者物理吸附氧本来和表面的不均衡等方面来验证了我国现阶段煤自燃倾向性测试的方法理论的不合理性,我们可以用一些方法来提出操作的不合理性。... 了解和评价了当今全世界主要采煤国家采用的煤自燃倾向性测试的方法。从煤自燃的基本机理或者物理吸附氧本来和表面的不均衡等方面来验证了我国现阶段煤自燃倾向性测试的方法理论的不合理性,我们可以用一些方法来提出操作的不合理性。然后在逐一的分析,并且提出一种表现出煤自燃的全部过程的自燃倾向性的确定方法的新设想,对于完善我国煤自燃倾向性的检测方案有很大的促进作用。 展开更多
关键词 物理吸附 煤自燃的倾向性 检定方法不合理性分析 温度
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Fluid–solid coupling analysis of rock pillar stability for concealed karst cave ahead of a roadway based on catastrophic theory 被引量:10
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作者 Zhao Yanlin Peng Qingyang +2 位作者 Wan Wen Wang Weijun Chen Bin 《International Journal of Mining Science and Technology》 SCIE EI 2014年第6期737-745,共9页
In order to study the mechanism of water inrush from a concealed, confined karst cave, we established a fluid–solid coupling model of water inrush from a concealed karst cave ahead of a roadway and a strength reducti... In order to study the mechanism of water inrush from a concealed, confined karst cave, we established a fluid–solid coupling model of water inrush from a concealed karst cave ahead of a roadway and a strength reduction method in a rock pillar for preventing water inrush based on catastrophic theory. Fluid–solid coupling effects and safety margins in a rock pillar were studied. Analysis shows that rock pillar instability, exerted by disturbance stress and seepage stress, is the process of rock pillar catastrophic destabilization induced by nonlinear extension of plastic zones in the rock pillar. Seepage flow emerges in the rock pillar for preventing water inrush, accompanied by mechanical instability of the rock pillar. Taking the accident of a confined karst cave water-inrush of Qiyi Mine as an example, by studying the safety factor of the rock pillar and the relationship between karst cave water pressure and thickness of the rock pillar,it is proposed that rock pillar thickness with a safety factor equal to 1.5 is regarded as the calculated safety thickness of the rock pillar, which should be equal to the sum of the blasthole depth, blasting disturbance depth and the calculated safety thickness of the rock pillar. The cause of the karst water inrush at Qiyi Mine is that the rock pillar was so small that it did not possess a safety margin. Combining fluid–solid coupling theory, catastrophic theory and strength reduction method to study the nonlinear mechanical response of complicated rock engineering, new avenues for quantitative analysis of rock engineering stability evaluation should be forthcoming. 展开更多
关键词 Rock mechanics Catastrophic theory Shear strength reduction method Karst water inrush Safety factor
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