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Forced Resonance of a Slightly-Curved Hydraulic Pipe Fixed at Two Ends
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作者 MAO Xiaoye XIAO Lu +1 位作者 DING Hu CHEN Liqun 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2022年第3期271-279,共9页
The ideally straight hydraulic pipe is inexistent in reality. The initial curve caused by the manufacturing or the creep deformation during the service life will change the dynamic character of the system. The current... The ideally straight hydraulic pipe is inexistent in reality. The initial curve caused by the manufacturing or the creep deformation during the service life will change the dynamic character of the system. The current work discusses the effect of the initial curve on the hydraulic pipe fixed at two ends for the first time. Based on the governing equation obtained via the generalized Hamilton’s principle,the potential energy changing with the height of the initial curve is discussed. The initial curve makes the potential energy curve asymmetric,but the system is always monostable. The initial curve also has very important influence on natural frequencies. It hardens the stiffness of the first natural mode at first and then has no effect on this mode after a critical value. On the contrast,the second natural frequency is constant before the critical value but increases while the height of the initial curve exceeds the critical value. On account of the initial value,the quadratic nonlinearity appears in the system. Forced resonance is very different from that of the ideally straight pipe under the same condition. Although the 2∶1 internal resonance is established by adjusting the height of the initial curve and the fluid speed,the typical double-jumping phenomenon does not occur under the initial curve given in the current work. This is very different from the straight pipe in the supercritical region. The work here claims that the initial curve of the hydraulic pipe should be taken into consideration. Besides,more arduous work is needed to reveal the dynamic characters of it. 展开更多
关键词 forced resonance hydraulic pipe slightly-curved pipe harmonic balance method
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Explicit solution of diffusion master equation under the action of linear resonance force via the thermal entangled state representation 被引量:3
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作者 姚飞 王继锁 徐天牛 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第7期98-101,共4页
Using the well-behaved features of the thermal entangled state representation, we solve the diffusion master equation under the action of a linear resonance force, and then obtain the infinitive operator-sum represent... Using the well-behaved features of the thermal entangled state representation, we solve the diffusion master equation under the action of a linear resonance force, and then obtain the infinitive operator-sum representation of the density operator. This approach may also be effective for treating other master equations. Moreover, we find that the initial pure coherent state evolves into a mixed thermal state after passing through the diffusion process under the action of the linear resonance force. 展开更多
关键词 diffusion process linear resonance force thermal state representation infinitive operator-sum representation
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Measurement of the friction coefficient of a fluctuating contact line using an AFM-based dual-mode mechanical resonator
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作者 郭硕 熊小敏 +2 位作者 徐祖力 沈平 童彭尔 《Chinese Physics B》 SCIE EI CAS CSCD 2014年第11期64-74,共11页
A dual-mode mechanical resonator using an atomic force microscope (AFM) as a force sensor is developed. The resonator consists of a long vertical glass fiber with one end glued onto a rectangular cantilever beam and... A dual-mode mechanical resonator using an atomic force microscope (AFM) as a force sensor is developed. The resonator consists of a long vertical glass fiber with one end glued onto a rectangular cantilever beam and the other end immersed through a liquid-air interface. By measuring the resonant spectrum of the modified AFM cantilever, one is able to accurately determine the longitudinal friction coefficient ξv along the fiber axis associated with the vertical oscillation of the hanging fiber and the traversal friction coefficient ξh perpendicular to the fiber axis associated with the horizontal swing of the fiber around its joint with the cantilever. The technique is tested by measurement of the friction coefficient of a fluctuating (and slipping) contact line between the glass fiber and the liquid interface. The experiment verifies the theory and demonstrates its applications. The dual-mode mechanical resonator provides a powerful tool for the study of the contact line dynamics and the rheological property of anisotropic fluids. 展开更多
关键词 contact line dynamics atomic force microscope (AFM) resonator friction coefficient liquid inter-faces
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Resonant gradient force on atom interacting with laser field
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作者 方建兴 陈险峰 +1 位作者 朱士群 张融 《Chinese Optics Letters》 SCIE EI CAS CSCD 2003年第2期122-124,共3页
The gradient force, as a function of position and velocity, is derived for a two-level atom interacting with a standing-wave laser field. Basing on optical Bloch equations, the numerical solutions for the gradient for... The gradient force, as a function of position and velocity, is derived for a two-level atom interacting with a standing-wave laser field. Basing on optical Bloch equations, the numerical solutions for the gradient force f⊥,n (n = 0,1, 2,3,4, …) pointing in the direction of the transverse of the laser beam are given. It is shown the higher order gradient force plays important role at strong intensity (G = 64), the contribution of them can not be neglected. 展开更多
关键词 of into Resonant gradient force on atom interacting with laser field on with for
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