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A Comparative Study of Dispersion Characteristics Determination of a Trapezoidally Corrugated Slow Wave Structure Using Different Techniques
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作者 Md.Ghulam Saber Rakibul Hasan Sagor Md.Ruhul Amin 《Chinese Physics Letters》 SCIE CAS CSCD 2016年第1期132-135,共4页
The linear dispersion relation of a trapezoidally corrugated slow wave structure (TCSWS) is analyzed and presented. The size parameters of the TCSWS are chosen in such a way that they operate in the x-band frequency... The linear dispersion relation of a trapezoidally corrugated slow wave structure (TCSWS) is analyzed and presented. The size parameters of the TCSWS are chosen in such a way that they operate in the x-band frequency range. The dispersion relation is solved by utilizing the Rayleigh-Fourier method by expressing the radial function in terms of the Fourier series. A highly accurate synthetic technique is also applied to determine the complete dispersion characteristics from experimentally measured resonances (cold test). Periodic structures resonate at specific frequencies when the terminals are shorted numerical calculation, synthetic technique and cold appropriately. The dispersion characteristics obtained from test are compared, and an excellent agreement is achieved. 展开更多
关键词 of on A Comparative Study of dispersion characteristics Determination of a Trapezoidally Corrugated Slow Wave Structure Using Different Techniques in been IS
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Plume dynamics and dispersion characteristics in oil horizontal release from damaged submarine pipeline
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作者 Jun Zhang Hongzhou He Shaohui Yang 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2020年第5期1214-1224,共11页
The dynamics model of plume for underwater oil spill is improved by considering the drag force of the plume.The comparisons between prediction and experiment show that the improved model is viable.The improved model c... The dynamics model of plume for underwater oil spill is improved by considering the drag force of the plume.The comparisons between prediction and experiment show that the improved model is viable.The improved model combining the Lagrangian random walk method is used to simulate the entire oil transport process from release exit to water surface in underwater oil horizontal release and some new results are obtained.Firstly,the release rate,the current velocity and its direction have evident influence on plume dynamics.The plume length increases as release flow rate increases.For small oil release rate,the plume length is very short so that the plume stage can be ignored due to the small initial momentum.When the oil release in direction is the same as the current,the current will play a positive role in the plume motion and the plume will therefore extend a longer distance.In this case,the greater the current velocity is,the longer the plume extension length will be.And when the oil release in direction is opposite to the current,the plume first moves forward and then is reversed to move along the opposite direction.The position of the reversal point depends on the current velocity and the release rate.Secondly,the release rate and the current velocity also have a significant effect on oil droplet diffusion.For small oil release rate,the oil distribution area is narrow and the concentration near upper side of droplets moving path is relatively higher.As the release rate or current velocity increases,the oil droplet diffusion area expands away from the release point.Finally,the movement characteristics of oil droplets in the plume and diffusion stages will affect the time and location for oil droplets reaching the surface.In a small release rate as well as a small current velocity,the time for oil droplet reaching surface is very short and the horizontal position reaching surface is closer to release point.In this case,the time spent in the plume stage is extremely short compared to the time spent in the entire oil motion process.Therefore,the plume dynamics stage can be ignored in this case.With the increase of release rate or current velocity,the plume will be extended and the time spent in plume dynamics stage will also be longer,so the plume dynamics stage can no longer be ignored for larger release rate or current velocity.In the case of reverse current,as the plume momentum be partially consumed by the reverse current,the plume is reversed and decays quickly,the time taken in the plume dynamics stage is relatively shorter than that for positive current.Correspondingly,the total time is also somewhat shortened. 展开更多
关键词 Submarine pipeline Plume dynamics dispersion characteristics SIMULATION
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Effects of Boundary Current on Electromagnetic Dispersion Characteristics for a Relativistic Electron Beam
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作者 肖集雄 曾中 +2 位作者 夏冬辉 王之江 刘昌海 《Plasma Science and Technology》 SCIE EI CAS CSCD 2016年第1期51-57,共7页
With betatron oscillation characteristics of the electron beam and ion channel effect taken into account,dispersion characteristics of electrostatic modes and TM modes for a relativistic electron beam guided by ion ch... With betatron oscillation characteristics of the electron beam and ion channel effect taken into account,dispersion characteristics of electrostatic modes and TM modes for a relativistic electron beam guided by ion channel are studied.Dispersion relations are derived and solved numerically to investigate the dependence of the dispersion characteristics for electrostatic modes and TM modes on the betatron oscillation frequency and the ratio of the relativistic electron beam radius to the waveguide radius.The effects of the boundary current on the dispersion characteristic of the TM modes and the interaction between the betatron modes and TM modes are analyzed.When considering the boundary current,for a strong ion channel,a new low-frequency branch of the TM modes arises and the interaction frequency between the betatron modes and the TM01modes is increased with the same parameters. 展开更多
关键词 dispersion characteristics electromagnetic eigenmodes betatron oscillation ion channel
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Research on Leak Location of Liquid-filled Pipe Based on Frequency Dispersion Characteristics
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作者 Lijun XIONG Ping LU +1 位作者 Yun YANG Li LI 《Mechanical Engineering Science》 2021年第1期19-27,共9页
Due to the material problems and force majeure factors,the leakage will be occurred on the liquid-filled pipe resulting in waste of resources,environmental pollution and even endangering safety.Acoustic wave detection... Due to the material problems and force majeure factors,the leakage will be occurred on the liquid-filled pipe resulting in waste of resources,environmental pollution and even endangering safety.Acoustic wave detection technology is widely used in buried pipeline leak detection,this technology mainly uses the wave(n=0,s=1)in the pipeline acoustic wave to locate the leak.When the leakage acoustic signal propagates along the liquid-filled pipe,the frequency dispersion characteristics can be obtained by wavelet decomposition.And there is a time delay(time difference)value between the leaky acoustic signals collected by the sensors at both ends of the leak.The outputs show that the results obtained by wavelet decomposition are in good agreement with the theoretical calculation results.Based on the obtained dispersion relation,the time delay values at different characteristic frequencies are analyzed by the cross-correlation method,and the leak location accuracy is discussed.This research content provides theoretical support and engineering application guidance for pipe leakage location technology. 展开更多
关键词 Liquid-filled pipe Frequency dispersion characteristics Leak location Time delay estimation value
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Love wave propagation in one-dimensional piezoelectric quasicrystal multilayered nanoplates with surface effects
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作者 Xin FENG Liaoliang KE Yang GAO 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2024年第4期619-632,共14页
The exact solutions for the propagation of Love waves in one-dimensional(1D)hexagonal piezoelectric quasicrystal(PQC)nanoplates with surface effects are derived.An electro-elastic model is developed to investigate the... The exact solutions for the propagation of Love waves in one-dimensional(1D)hexagonal piezoelectric quasicrystal(PQC)nanoplates with surface effects are derived.An electro-elastic model is developed to investigate the anti-plane strain problem of Love wave propagation.By introducing three shape functions,the wave equations and electric balance equations are decoupled into three uncorrelated problems.Satisfying the boundary conditions of the top surface on the covering layer,the interlayer interface,and the matrix,a dispersive equation with the influence of multi-physical field coupling is provided.A surface PQC model is developed to investigate the surface effects on the propagation behaviors of Love waves in quasicrystal(QC)multilayered structures with nanoscale thicknesses.A novel dispersion relation for the PQC structure is derived in an explicit closed form according to the non-classical mechanical and electric boundary conditions.Numerical examples are given to reveal the effects of the boundary conditions,stacking sequence,characteristic scale,and phason fluctuation characteristics on the dispersion curves of Love waves propagating in PQC nanoplates with surface effects. 展开更多
关键词 piezoelectric quasicrystal(PQC)material multilayered plate dispersion characteristic surface effect
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Research on the Characteristic of the Disk-Loaded Waveguide, Rib-Loaded Disk-Loaded Waveguide and Helix Slow-Wave Structures
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作者 ZHANGYong 《Journal of Electronic Science and Technology of China》 2005年第2期188-189,共2页
关键词 traveling wave tube disk-loaded waveguide HELIX slow-wave structure dispersion characteristics interaction impedance plasma filled computer simulation rib-loaded hybrid mode
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Wave propagation analysis of porous functionally graded piezoelectric nanoplates with a visco-Pasternak foundation 被引量:1
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作者 Zhaonian LI Juan LIU +2 位作者 Biao HU Yuxing WANG Huoming SHEN 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2023年第1期35-52,共18页
This study investigates the size-dependent wave propagation behaviors under the thermoelectric loads of porous functionally graded piezoelectric(FGP) nanoplates deposited in a viscoelastic foundation.It is assumed tha... This study investigates the size-dependent wave propagation behaviors under the thermoelectric loads of porous functionally graded piezoelectric(FGP) nanoplates deposited in a viscoelastic foundation.It is assumed that(i) the material parameters of the nanoplates obey a power-law variation in thickness and(ii) the uniform porosity exists in the nanoplates.The combined effects of viscoelasticity and shear deformation are considered by using the Kelvin-Voigt viscoelastic model and the refined higher-order shear deformation theory.The scale effects of the nanoplates are captured by employing nonlocal strain gradient theory(NSGT).The motion equations are calculated in accordance with Hamilton’s principle.Finally,the dispersion characteristics of the nanoplates are numerically determined by using a harmonic solution.The results indicate that the nonlocal parameters(NLPs) and length scale parameters(LSPs) have exactly the opposite effects on the wave frequency.In addition,it is found that the effect of porosity volume fractions(PVFs) on the wave frequency depends on the gradient indices and damping coefficients.When these two values are small,the wave frequency increases with the volume fraction.By contrast,at larger gradient index and damping coefficient values,the wave frequency decreases as the volume fraction increases. 展开更多
关键词 scale effect functionally graded material(FGM) dispersion characteristic piezoelectric nanoplate viscoelastic foundation
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ON FREE WAVE PROPAGATION IN ANISOTROPIC LAYERED MEDIA 被引量:4
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作者 Yongqiang Guo Weiqiu Chen 《Acta Mechanica Solida Sinica》 SCIE EI 2008年第6期500-506,共7页
The method of reverberation-ray matrix (MRRM) is extended and modified for the analysis of free wave propagation in anisotropic layered elastic media. A general, numerically stable formulation is established within ... The method of reverberation-ray matrix (MRRM) is extended and modified for the analysis of free wave propagation in anisotropic layered elastic media. A general, numerically stable formulation is established within the state space framework. The compatibility of physical variables in local dual coordinates gives the phase relation, from which exponentially growing functions are excluded. The interface and boundary conditions lead to the scattering relation, which avoids matrix inversion operation. Numerical examples are given to show the high accuracy of the present MRRM. 展开更多
关键词 anisotropic layered media the method of reverberation-ray matrix elastic waves dispersion characteristic
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Comparative research on three types of coaxial slow wave structures 被引量:2
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作者 肖仁珍 刘国治 陈昌华 《Chinese Physics B》 SCIE EI CAS CSCD 2008年第10期3807-3811,共5页
This paper studies three types of coaxial slow wave structures (SWSs): (1) with ripples on both the inner and outer conductors; (2) with ripples on the outer conductor and smooth on the inner one; and (3) wit... This paper studies three types of coaxial slow wave structures (SWSs): (1) with ripples on both the inner and outer conductors; (2) with ripples on the outer conductor and smooth on the inner one; and (3) with ripples on the inner conductor and smooth on the outer one. The frequencies, coupling impedances, time growth rates and beam-wave interaction efficiencies of the three types of coaxial SWSs are obtained by theoretical analysis. Moreover, the relativistic Ccrenkov generators (RCGs) with the three types of coaxial SWSs are simulated with a fully electromagnetic particle- in-cell code, and the results verify the theoretical analysis. It is proved that the RCG with double-rippled coaxial SWS has the highest conversion efficiency and the shortest starting time. 展开更多
关键词 relativistic Cerenkov generator coaxial slow wave structure dispersion characteristics particle-in-cell simulation
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Landau damping in a bounded magnetized plasma column 被引量:1
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作者 H.Zakeri-Khatir F.M.Aghamir 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第2期287-294,共8页
The damping decrement of Landau damping and the effect of thermal velocity on the frequency spectrum of a propagating wave in a bounded plasma column are investigated.The magnetized plasma column partially filling a c... The damping decrement of Landau damping and the effect of thermal velocity on the frequency spectrum of a propagating wave in a bounded plasma column are investigated.The magnetized plasma column partially filling a cylindrical metallic tube is considered to be collisionless and non-degenerate.The Landau damping is due to the thermal motion of charge carriers and appears whenever the phase velocity of the plasma waves exceeds the thermal velocity of carriers.The analysis is based on a self-consistent kinetic theory and the solutions of the wave equation in a cylindrical plasma waveguide are presented using Vlasov and Maxwell equations.The hybrid mode dispersion equation for the cylindrical plasma waveguide is obtained through the application of appropriate boundary conditions to the plasma-vacuum interface.The dependence of Landau damping on plasma parameters and the effects of the metallic tube boundary on the dispersion characteristics of plasma and waveguide modes are investigated in detail through numerical calculations. 展开更多
关键词 Landau damping cylindrical plasma waveguide Vlasov equation dispersion characteristic
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Theoretical analysis of a relativistic travelling wave tube filled with plasma
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作者 谢鸿全 刘濮鲲 《Chinese Physics B》 SCIE EI CAS CSCD 2007年第3期766-771,共6页
A cold and uniform plasma-filled travelling wave tube with sinusoidally corrugated slow wave structure is driven by a finite thick annular intense relativistic electron beam with the entire system immersed in a strong... A cold and uniform plasma-filled travelling wave tube with sinusoidally corrugated slow wave structure is driven by a finite thick annular intense relativistic electron beam with the entire system immersed in a strong longitudinal magnetic field. By means of the linear field theory, the dispersion relation for the relativistic travelling wave tube (RTWT) is derived. By numerical computation, the dispersion characteristics of the RTWT are analysed in different cases of various geometric parameters of the slow wave structure and plasma densities. Also the gain versus frequency for three different plasma densities and the peak gain of the tube versus plasma density are analysed. Some useful results are obtained on the basis of the discussion. 展开更多
关键词 RTWT PLASMA annular electron beam dispersion characteristic GAIN
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Variational analysis of the disc-loaded waveguide slow-wave structures
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作者 李建清 莫元龙 《Chinese Physics B》 SCIE EI CAS CSCD 2005年第11期2300-2304,共5页
The variational method is applied to calculate the dispersion characteristics of disc-loaded waveguide slow-wave structures. The parameters describing the waveguide discontinuities in disc-loaded waveguide are calcula... The variational method is applied to calculate the dispersion characteristics of disc-loaded waveguide slow-wave structures. The parameters describing the waveguide discontinuities in disc-loaded waveguide are calculated by the variational method. Then the dispersion characteristics of slow-wave structures are obtained using lossless microwave quadrupole theory. Good agreement was observed between results of the Variational method and those of field matching method and high frequency structure simulator. In the case of broad band, results of the variational method are better than those of field matching method. 展开更多
关键词 variational method disc-loaded waveguide slow-wave structures dispersion characteristics
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Accurate analysis of arbitrarily-shaped helical groove waveguide
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作者 刘洪涛 魏彦玉 +2 位作者 宫玉彬 岳玲娜 王文祥 《Chinese Physics B》 SCIE EI CAS CSCD 2006年第9期2114-2119,共6页
This paper presents a theory on accurately analysing the dispersion relation and the interaction impedance of electromagnetic waves propagating through a helical groove waveguide with arbitrary groove shape, in which ... This paper presents a theory on accurately analysing the dispersion relation and the interaction impedance of electromagnetic waves propagating through a helical groove waveguide with arbitrary groove shape, in which the complex groove profile is synthesized by a series of rectangular steps. By introducing the influence of high-order evanescent modes on the connection of any two neighbouring steps by an equivalent susceptance under a modified admittance matching condition, the assumption of the neglecting discontinuity capacitance in previously published analysis is avoided, and the accurate dispersion equation is obtained by means of a combination of field-matching method and admittancematching technique. The validity of this theory is proved by comparison between the measurements and the numerical calculations for two kinds of helical groove waveguides with different groove shapes. 展开更多
关键词 helical groove waveguide dispersion characteristic interaction impedance travelling wave tube
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An open-styled dielectric-lined azimuthally periodic circular waveguide for a millimeter wave traveling-wave tube
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作者 刘漾 魏彦玉 +4 位作者 徐进 殷海荣 岳玲娜 宫玉彬 王文祥 《Chinese Physics B》 SCIE EI CAS CSCD 2012年第4期597-604,共8页
An open-styled dielectric-lined azimuthMly periodic circular waveguide (ODLAP-CW) for a millimeter-wave traveling-wave tube (TWT) is proposed, which is a modified form of a dielectric-lined azimuthally periodic ci... An open-styled dielectric-lined azimuthMly periodic circular waveguide (ODLAP-CW) for a millimeter-wave traveling-wave tube (TWT) is proposed, which is a modified form of a dielectric-lined azimuthally periodic circular waveguide (DLAP-CW). The slow-wave characteristics of the open-styled DLAP-CW are studied by using the spatial harmonics method, which includes normalized phase velocity and interaction impedance. The complicated dispersion equations are numerically solved with MATLAB and the results are in good agreement with the simulation results obtained from HFSS. The influence of structural parameters on the RF properties is investigated based on our theory. The numerical results show that the optimal thickness of the metal rod can increase the interaction impedance, with the dielectric constant held fixed. Finally, the slow-wave characteristics and transmission properties of an open-styled structure are compared with those of the DLAP-CW. The results validate that the mode competition is eliminated in the improved structure with only a slight influence on the dispersion characteristics, which may significantly improve the stability of an open-styled DLAP-CW-based TWT, and the interaction efficiency is also improved. 展开更多
关键词 dispersion characteristics slow-wave structure millimeter wave traveling-wave tube spa- tial harmonics method
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Theoretical study of wave propagation along the coaxial waveguide filled with moving magnetized plasma
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作者 张雅鑫 贾佳 +1 位作者 刘盛纲 鄢扬 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第10期339-347,共9页
This paper presents detailed theoretical study on the theory of wave propagation along the coaxial waveguide filled with moving magnetized plasma (CWMMP). Making use of the Lorentz transformation and the constitutiv... This paper presents detailed theoretical study on the theory of wave propagation along the coaxial waveguide filled with moving magnetized plasma (CWMMP). Making use of the Lorentz transformation and the constitutive transformation, Maxwell's equations lead to the coupled non-homogeneous differential equations which govern the wave propagation in CWMMP, and then analytical solutions have been obtained. The discussion about the eigenvalues of the waves and detailed studies on the fields are carried out. It finds that the fields of the CWMMP are composed of two parts with different eigenvalues. Numerical calculations show that because of Doppler shift effect, the eigenvalues of the modes in such a case is quite different from those of the CWMMP. And a detailed discussion on the dispersion characteristic of CWMMP is presented. 展开更多
关键词 moving magnetized plasma dispersion characteristic
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