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基于超限化的吸收层析反演算法研究
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作者 水崇源 黄建青 蔡伟伟 《气体物理》 2020年第2期28-37,共10页
针对吸收光谱层析(tomographic absorption spectroscopy,TAS)中的反问题,利用超限化(superiorization)在重建中引入平滑性、稀疏性等先验条件,对现有的层析反演算法提出了改进.通过计算机仿真,对代数重建(algebraic reconstruction tec... 针对吸收光谱层析(tomographic absorption spectroscopy,TAS)中的反问题,利用超限化(superiorization)在重建中引入平滑性、稀疏性等先验条件,对现有的层析反演算法提出了改进.通过计算机仿真,对代数重建(algebraic reconstruction technique,ART)算法、最大似然期望最大化(maximum likelihod expectation maximization,MLEM)算法的超限化在TAS反演中的应用进行了研究.在仿真中,对比了不同二维火焰场、不同目标约束函数下超限化算法的效果,研究了噪声对重建的影响以及超限化算法在不同条件下的计算效率.研究结果证实了超限化对于层析反演算法在计算精度、收敛速度等方面的提升效果. 展开更多
关键词 吸收光谱层析 二维重建 反演算法 先验条件 超限化
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Study on the Diffusion Coefficient of Sodium Chloride at Infinite Dilution in Supercritical Water
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作者 肖吉 陆九芳 +1 位作者 陈健 李以圭 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2003年第2期208-212,共5页
The molecular dynamics (MD) was employed to simulate the diffusion coefficient of sodium chloride at infinite dilution in supercritical water from 703.2 K to 763.2 K and from 30 MPa to 45 MPa. Based on the simulated d... The molecular dynamics (MD) was employed to simulate the diffusion coefficient of sodium chloride at infinite dilution in supercritical water from 703.2 K to 763.2 K and from 30 MPa to 45 MPa. Based on the simulated data and the Patel-Teja(PT) equation of state and the Liu-Ruckenstein equation, an equation for calculating the diffusion coefficient of NaCl at infinite dilution in supercritical water is proposed. Both the agreement between the simulated and correlated data, and that between the simulated and predicted data of diffusion coefficients for NaCl in supercritical water ranging from 703.2K to 803.2 K and from 25 MPa to 50 MPa show that this equation is applicable for the calculation of diffusion coefficients. 展开更多
关键词 diffusion coefficient sodium chloride supercritical water
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Polarization insensitivity electromagnetically induced reflection in graphene metasurface
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作者 WANG Jin WANG Xingchen +1 位作者 GAO Xiang NING Renxia 《Journal of Measurement Science and Instrumentation》 CAS CSCD 2021年第3期362-368,共7页
The electromagnetically induced reflection(EIR)effect of graphene metamaterials has been investigated by finite difference time domain(FDTD)method.In this study,a metamaterial sandwich structure composed of silica(SiO... The electromagnetically induced reflection(EIR)effect of graphene metamaterials has been investigated by finite difference time domain(FDTD)method.In this study,a metamaterial sandwich structure composed of silica(SiO2),gold and graphene on terahertz band is designed.By changing the width of the two ribbons of graphene length and the incident angle of electromagnetic wave,the EIR effect of the structure is discussed,and it can be found that SiO2 is a kind of excellent dielectric material.The simulation results show that graphene metamaterial is not sensitive to polarized incident electromagnetic wave.Therefore,such EIR phenomena as insensitive polarization and large incident angle can be applied to optical communication filters and terahertz devices. 展开更多
关键词 electromagnetically induced reflection(EIR) graphene metamaterials polarization insensitivity finite difference time domain(FDTD)method
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Simulation about hot stamping of ultra-high strength steel on the basis of lightweight technology
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作者 Liu Qiang Ma Fangwu +5 位作者 Wang Xiaona Yao Zaiqi Song Wei Zhao Fuquan Ma Mingtu Song Leifeng 《Engineering Sciences》 EI 2012年第6期67-70,共4页
With the development of automobile lightweight,it is very necessary to apply the ultra-high strength steel parts manufactured by hot stamping,which offers the possibility to reduce the weight of automobiles and mainta... With the development of automobile lightweight,it is very necessary to apply the ultra-high strength steel parts manufactured by hot stamping,which offers the possibility to reduce the weight of automobiles and maintain the safety requirement.In order to complete hot stamping,it is important to design the structure of parts reasonably,which is related with reasonable matching of strength.The objective of this paper is to guide the design of parts manufactured by hot stamping and find the forming technical requirements of vehicle performance.Through experiments,the paper obtains the stress and strain curves at different deformation temperatures and strain rates.Based on experimental data, the constitutive relationship model is established which can reflect the deformation capacity of ultra-high strength steel during the process of hot stamping.Combined with finite element simulation results of hot stamping by commercial software AUTOFORM,transfer path of load and matching law of strength,the paper determines the design criteria and forming technical requirements of parts manufactured by hot stamping.At the same time,the impact performance of front cross member internal plate is taken into consideration. 展开更多
关键词 ultra-high strength steel hot stamping finite element simulation lightweight technology
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