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11篇 您的检索式:作者名="Shunchuan"
    题名 作者 年代 出处 被引量
1Use of SAR interferometry for monitoring illegal mining activities: A case study at Xishimen Iron Ore Mine显示文摘The development and application of the ''digital mine'' concept in China depends heavily upon the use of remote sensing data as well as domestic expertise and awareness. Illegal mining of mineral resources has been a serious long term problem frustrating the Xishimen Iron Ore Mine management. This mine is located in Wu'an county in Hebei province, China. Illegal activities have led to enormous economic losses by interfering with the normal operation of the Xishimen mine and have ruined the surrounding environ- ment and the stability of the Mahe riverbed the crosses the mined area. This paper is based on field recon- naissance taken over many years around the mine area. The ground survey data are integrated with Differential Synthetic Aperture Radar Interferometry (D-InSAR) results from ALOS/PALSAR data to pin- point mining locations. By investigating the relationship between the resulting interferometric deforma- tion pattern and the mining schedule, which is known a priori, areas affected by illegal mining activities are identified. To some extent these areas indicate the location of the illegal site. The results clearly dem- onstrate D-InSAR's ability to cost-effectively monitor illegal mining activities.Ji Maowei Li Xiaojing Wu Shunchuan Gao Yongtao Ge Linlin 2011Mining Science and Technology2011,21,6:7
2An Analytical Method for Calculating the Shielding Effectiveness of an Enclosure with an Oblique Rectangular Aperture显示文摘An efficient analytical method is proposed to calculate the Shielding effectiveness(SE)of an enclosure with an oblique rectangular aperture.This enclosure was first decomposed into two ones with horizontal rectangular apertures through mirror image and Green function theories.The SE of each decomposed enclosure was calculated by the Robinson’s method.The relationship between the SE of the original cavity and those of the decomposed ones was also derived analytically.The SE of the original cavity could be directly obtained from this analytical relationship.The accuracy of the proposed method was validated with measurements and the Transmission line matrix(TLM)solver.The results show that the efficiency was largely improved compared with the TLM solver.SU Donglin LIU Hongyi YANG Shunchuan ZHAO Zihua SUI Donghai 2019Chinese Journal of Electronics2019,28,4:5
3Kernel class-wise locality pre- serving projection 显示文摘Junbao L Jengshyang P Shunchuan C 2008Information Sciences2008,178,7:1
4Rock fracture mechanism and its evolution law of triaxial compression test based on P-T distribution diagram method显示文摘CHAI Jinfei JIN Aibing WU Shunchuan 2015Electronic Journal of Geotechnical Engineering2015,20,13:1
5Adaptive Maxwell’s Equations Derived Optimization and Its Application in Antenna Array Synthesis显示文摘In this paper,a self-adaptive method for the Maxwell’s Equations Derived Optimization(MEDO)is proposed.It is implemented by applying the Sequential Model-Based Optimization(SMBO)algorithm to the iterations of the MEDO,and achieves the automatic adjustment of the parameters.The proposed method is named as adaptive Maxwell’s equations derived optimization(AMEDO).In order to evaluate the performance of AMEDO,eight benchmarks are used and the results are compared with the original MEDO method.The results show that AMEDO can greatly reduce the workload of manual adjustment of parameters,and at the same time can keep the accuracy and stability.Moreover,the convergence of the optimization can be accelerated due to the dynamical adjustment of the parameters.In the end,the proposed AMEDO is applied to the side lobe level suppression and array failure correction of a linear antenna array,and shows great potential in antenna array synthesis.Donglin Su Lilin Li Shunchuan Yang Fei Wang 2021China Communications2021,18,5:1
6Crack coalescence between two non-parallel flaws in rock-like material under uniaxial compression显示文摘Xiao-Ping Zhang Quansheng Liu Shunchuan Wu Xuhai Tang 2015Engineering Geology2015,,:1
7A new optimization algorithm applied in electromagnetics——Maxwell’s equations derived optimization(MEDO)显示文摘In this paper,a novel global optimization algorithm,named as Maxwell’s equations derived optimization(MEDO),is proposed.Using the Maxwell’s equations to analyse the behaviors of the timevarying current,the Ampere force is obtained from Fleming’s left hand rule.MEDO introduces an‘Ampere force’term,which is derived from Maxwell’s equations and is rigorous in physics,to drive the variables to the global optimal solution in the search space.In addition,introducing‘gravity’to MEDO can increase the stability of the optimizations.11 classical benchmarks are tested,and results show that MEDO can always converge to numerical optimal solutions.To evaluate the proposed MEDO in solving the electromagnetic problems,four practical engineering applications are considered including the linear antenna array synthesis,frequency selected surface optimization,numerical dispersion reduction for finite-difference method,and parameters extraction of typical waveform.These examples are significant in electromagnetics,but tough to be solved because of their high dimensionality and strong nonlinearity.Numerical results show that MEDO can outperform several classic optimization methods,like wind driven optimization(WDO)and particle swarm optimization(PSO).Therefore,the electromagnetics-inspired MEDO is robust and of great potential in solving the electromagnetic optimization problems.Donglin SU Lilin LI Shunchuan YANG Bing LI Guangzhi CHEN Hui XU 2020Science China(Information Sciences)2020,63,10:1
8Sliding behaviors of the trapezoidal roof rock block under a lateral dynamic disturbance显示文摘The surrounding rock of underground space is always affected by external dynamic disturbance from the side position,such as blasting vibration from a stope at the same level or seismic waves from adjacent strata.A series of laboratory tests,numerical simulations and theoretical analyses were carried out in this study to disclose the sliding mechanism of roof rock blocks under lateral disturbance.Firstly,the experiments on trapezoidal key block under various clamping loads and disturbance were conducted,followed by numerical simulations using the fast Lagrangian analysis of continua(FLAC3D).Then,based on the conventional wave propagation model and the classical shear-slip constitutive model,a theoretical model was proposed to capture the relative displacement between blocks and the sliding displacement of the key block.The results indicate that the sliding displacement of the key block increased linearly with the disturbance energy and decreased exponentially with the clamping load when the key block was disturbed to slide(without instability).Meanwhile,when the key block was disturbed to fall,two types of instability process may appear as immediate type or delayed type.In addition,the propagation of stress waves in the block system exhibited obvious low-velocity and lowfrequency characteristics,resulting in the friction reduction effect appearing at the contact interface,which is the essential reason for the sliding of rock blocks.The results can be applied to practical underground engineering and provide valuable guidance for the early detection and prevention of rockfalling disasters.Feng Dai Wancheng Zhu Min Ren Shunchuan Wu Leilei Niu 2024Journal of Rock Mechanics and Geotechnical Engineering2024,16,3:0
9Resistance characteristics of paste pipeline flow in a pulse-pumping environment显示文摘Paste flow patterns and microscopic particle structures were studied in a pressurized environment generated by a pulse pump.Complex loop-pipe experiments and fluid-solid coupling-based simulations were conducted.The scanning electron microscopy technique was also applied.Results revealed that flow resistance is closely related to pipeline curvature and angle in a complex pipe network.The vertical downward-straight pipe-inclined downward combination was adopted to effectively reduce the loss in resistance along with reducing the number of bends or increasing the radius of bend curvature.The maximum velocity ratio and velocity offset values could quantitatively characterize the influences of different pipeline layouts on the resistance.The correlation reached 96%.Particle distribution and interparticle forces affected flow resistance.Uniform particle states and weak interparticle forces were conducive to steady transport.Pulse pump pressure led to high flow resistance.It could improve pipe flow stability by increasing flow uniformity and particle motion stability.These results can contribute to safe and efficient paste filling.Haiyong Cheng Zemin Liu Shunchuan Wu Hong Li Jiaqi Zhu Wei Sun Guanzhao Jiang 2023International Journal of Minerals,Metallurgy and Materials2023,30,8:0
10An Accurate and Efficient Approach for High-Frequency Transformer Parameter Extraction显示文摘Accurate parasitic parameter extraction of high-frequency transformers is one of the key techniques to efficiently design a Switched-mode power supply(SMPS). An approach to accurately and efficiently extract the parasitic parameters of high-frequency transformers is proposed. The high-frequency transformer is first de-composed into first-order RL and second-order RLC circuits according to inherent step response characteristics. Through the measured discharging pulse and damped oscillation responses of the high-frequency transformer excited by a square wave, we can extract the equivalent circuit parameters through fitting the responses with Particle swarm optimization(PSO). The equivalent circuits of the high-frequency transformer with the desired parameters are obtained for the SMPS design. We validate the effectiveness and accuracy of the proposed method with simulations and measurements.SU Donglin ZHU Kaixiang XU Hui PENG Zhenzhen YANG Shunchuan LIU Yan 2019Chinese Journal of Electronics2019,28,5:0
11Microscopic damage evolution of anisotropic rocks under indirect tensile conditions: Insights from acoustic emission and digital image correlation techniques显示文摘The anisotropy induced by rock bedding structures is usually manifested in the mechanical behaviors and failure modes of rocks.Brazilian tests are conducted for seven groups of shale specimens featuring different bedding angles. Acoustic emission (AE) and digital image correlation (DIC) technologies are used to monitor the in-situ failure of the specimens. Furthermore, the crack morphology of damaged samples is observed through scanning electron microscopy (SEM). Results reveal the structural dependence on the tensile mechanical behavior of shales. The shale disk exhibits compression in the early stage of the experiment with varying locations and durations. The location of the compression area moves downward and gradually disappears when the bedding angle increases. The macroscopic failure is well characterized by AE event location results, and the dominant frequency distribution is related to the bedding angle. The b-value is found to be stress-dependent.The crack turning angle between layers and the number of cracks crossing the bedding both increase with the bedding angle, indicating competition between crack propagations. SEM results revealed that the failure modes of the samples can be classified into three types:tensile failure along beddings with shear failure of the matrix, ladder shear failure along beddings with tensile failure of the matrix, and shear failure along multiple beddings with tensile failure of the matrix.Chaoqun Chu Shunchuan Wu Chaojun Zhang Yongle Zhang 2023International Journal of Minerals,Metallurgy and Materials2023,30,9:0
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