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基于弹性波动力学的检波器-介质耦合系统研究 被引量:2
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作者 陈高翔 田钢 《石油物探》 EI CSCD 北大核心 2016年第3期333-340,共8页
检波器与介质之间的耦合作用是影响地震记录质量的关键因素。基于弹性波动力学理论,开展了检波器-介质耦合问题研究,构建了耦合系统模型。通过弹性波动力学理论模型与传统振动力学理论模型对比,揭示了介质、检波器条件对耦合响应的影响... 检波器与介质之间的耦合作用是影响地震记录质量的关键因素。基于弹性波动力学理论,开展了检波器-介质耦合问题研究,构建了耦合系统模型。通过弹性波动力学理论模型与传统振动力学理论模型对比,揭示了介质、检波器条件对耦合响应的影响以及不同理论模型的差异,提出将波动模型与振动模型数据进行融合的方法。通过融合数据与实际地震数据对比,探讨了结合波动理论与振动理论解决实际耦合问题的可行性。 展开更多
关键词 检波器 耦合系统 弹性波动力学理论 振动力学理论 格林函数
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Static-deformation based fault diagnosis for damping spring of large vibrating screen 被引量:7
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作者 彭利平 刘初升 +1 位作者 李珺 王宏 《Journal of Central South University》 SCIE EI CAS 2014年第4期1313-1321,共9页
Based on the statics theory, a novel and feasible twice-suspended-mass method(TSMM) was proposed to deal with the seldom-studied issue of fault diagnosis for damping springs of large vibrating screen(LVS). With the st... Based on the statics theory, a novel and feasible twice-suspended-mass method(TSMM) was proposed to deal with the seldom-studied issue of fault diagnosis for damping springs of large vibrating screen(LVS). With the static balance characteristic of the screen body/surface as well as the deformation compatibility relation of springs considered, static model of the screen surface under a certain load was established to calculate compression deformation of each spring. Accuracy of the model was validated by both an experiment based on the suspended mass method and the properties of the 3D deformation space in a numerical simulation. Furthermore, by adopting the Taylor formula and the control variate method, quantitative relationship between the change of damping spring deformation and the change of spring stiffness, defined as the deformation sensitive coefficient(DSC), was derived mathematically, from which principle of the TSMM for spring fault diagnosis is clarified. In the end, an experiment was carried out and results show that the TSMM is applicable for diagnosing the fault of single spring in a LVS. 展开更多
关键词 static deformation suspended mass method large vibrating screen damping spring fault diagnosis
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