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基于非线性能量分析的鲕滩储层预测方法 被引量:6
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作者 熊晓军 王小品 贺振华 《西南石油大学学报(自然科学版)》 CAS CSCD 北大核心 2010年第4期1-5,193,共5页
Teager-Kaiser非线性能量(T-K能量)可以归为振幅类地震属性,但有别于常规的振幅类地震属性,它与振幅的平方、频率的平方成正比。鲕滩储层中流体为油气时地震记录往往呈现"高频衰减"现象,由于T-K能量与频率平方成正比,因此含... Teager-Kaiser非线性能量(T-K能量)可以归为振幅类地震属性,但有别于常规的振幅类地震属性,它与振幅的平方、频率的平方成正比。鲕滩储层中流体为油气时地震记录往往呈现"高频衰减"现象,由于T-K能量与频率平方成正比,因此含油气鲕滩储层内部T-K能量弱。鲕滩储层与围岩的物性差别使储层顶和底边界形成"亮点"反射,相应的T-K能量高,T-K属性剖面背景越发"明亮",而内部相对较"暗",利用这些特征可以有效地进行鲕滩储层预测,实际资料的计算结果表明,基于非线性能量分析的鲕滩储层预测方法得到的鲕滩储层分布与实钻完全一致。 展开更多
关键词 非线性能量分析 鲕滩 储层预测 T-K能量算子 亮点
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Energy analysis of face stability of deep rock tunnels using nonlinear Hoek-Brown failure criterion 被引量:7
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作者 张佳华 李永鑫 许敬叔 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第8期3079-3086,共8页
The nonlinear Hoek-Brown failure criterion was introduced to limit analysis by applying the tangent method. Based on the failure mechanism of double-logarithmic spiral curves on the face of deep rock tunnels, the anal... The nonlinear Hoek-Brown failure criterion was introduced to limit analysis by applying the tangent method. Based on the failure mechanism of double-logarithmic spiral curves on the face of deep rock tunnels, the analytical solutions of collapse pressure were derived through utilizing the virtual power principle in the case of pore water, and the optimal solutions of collapse pressure were obtained by using the optimization programs of mathematical model with regard of a maximum problem. In comparison with existing research with the same parameters, the consistency of change rule shows the validity of the proposed method. Moreover, parametric study indicates that nonlinear Hoek-Brown failure criterion and pore water pressure have great influence on collapse pressure and failure shape of tunnel faces in deep rock masses, particularly when the surrounding rock is too weak or under the condition of great disturbance and abundant ground water, and in this case, supporting measures should be intensified so as to prevent the occurrence of collapse. 展开更多
关键词 tunnel face limit analysis failure criterion pore water pressure collapse pressure
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