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论妨害公务罪中“暴力、威胁方法”的强度 被引量:2
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作者 袁亚 《科技信息》 2009年第18期338-339,共2页
《刑法》第277条对妨害公务罪"暴力、威胁方法"的规定过于简单、抽象,尤其欠缺具体的认定标准,难以在司法实践中实际操作,影响了该类案件裁判标准的严肃性和统一性,本文旨在界定"暴力、威胁方法"的强度,以期指导司... 《刑法》第277条对妨害公务罪"暴力、威胁方法"的规定过于简单、抽象,尤其欠缺具体的认定标准,难以在司法实践中实际操作,影响了该类案件裁判标准的严肃性和统一性,本文旨在界定"暴力、威胁方法"的强度,以期指导司法实践。 展开更多
关键词 暴力 威胁 强度下限 强度上限
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兴隆庄煤矿3#煤自燃倾向性研究
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作者 俞开文 许满贵 +1 位作者 王洪权 刘高文 《矿业安全与环保》 2001年第4期22-24,共3页
从理论上讲,煤自燃倾向性即煤的氧化性应该稳定不变可重复测试,但实际条件下并非如此,煤层自燃倾向不仅与煤自身化学结构有关,而且与煤层所处的周围环境有关。通过模拟现场煤层所处条件,测试研究了兴隆庄3#煤自燃倾向性。
关键词 自燃倾向性 氧化性 煤层 下限氧浓度 上限漏风强度 临界温度
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Upper bound analysis of slope stability with nonlinear failure criterion based on strength reduction technique 被引量:24
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作者 赵炼恒 李亮 +2 位作者 杨峰 罗强 刘项 《Journal of Central South University》 SCIE EI CAS 2010年第4期836-844,共9页
Based on the upper bound limit analysis theorem and the shear strength reduction technique, the equation for expressing critical limit-equilibrium state was employed to define the safety factor of a given slope and it... Based on the upper bound limit analysis theorem and the shear strength reduction technique, the equation for expressing critical limit-equilibrium state was employed to define the safety factor of a given slope and its corresponding critical failure mechanism by means of the kinematical approach of limit analysis theory. The nonlinear shear strength parameters were treated as variable parameters and a kinematically admissible failure mechanism was considered for calculation schemes. The iterative optimization method was adopted to obtain the safety factors. Case study and comparative analysis show that solutions presented here agree with available predictions when nonlinear criterion reduces to linear criterion, and the validity of present method could be illuminated. From the numerical results, it can also be seen that nonlinear parameter rn, slope foot gradient ,β, height of slope H, slope top gradient a and soil bulk density γ have significant effects on the safety factor of the slope. 展开更多
关键词 nonlinear failure criterion strength reduction method upper-bound theorem of limit analysis slope stability analysis factor of safety
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