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PV型HgCdTe线阵探测器的光学串扰 被引量:9
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作者 邱伟成 王睿 +2 位作者 许中杰 江天 程湘爱 《强激光与粒子束》 EI CAS CSCD 北大核心 2012年第10期2325-2330,共6页
针对MCT红外焦平面阵列器件普遍存在的光串扰问题进行研究,从器件内部结构上,建立了线阵器件理论计算模型,并基于载流子连续性方程,利用Comsol软件对光串扰的大小进行了数值定量计算,研究了不同探测器结构尺寸、温度和材料等参数对光串... 针对MCT红外焦平面阵列器件普遍存在的光串扰问题进行研究,从器件内部结构上,建立了线阵器件理论计算模型,并基于载流子连续性方程,利用Comsol软件对光串扰的大小进行了数值定量计算,研究了不同探测器结构尺寸、温度和材料等参数对光串扰的影响;从器件外部结构上,利用几何光学,研究了外部光学结构对光串扰的影响。研究结果表明,器件内部的衬底外延层厚度与器件外部的真空层对光串扰的影响最大,为今后红外焦平面器件结构的改进提供了一定的理论指导。 展开更多
关键词 HGCDTE 阵列探测器 comsol软件 光串扰
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真实破裂过程分析软件与多物理场耦合软件结构力学模块对比研究 被引量:7
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作者 徐涛 宋力 《大连大学学报》 2007年第6期66-71,共6页
简要介绍了真实破裂过程分析软件系统(RFPA)和多物理场耦合数值模拟软件系统(COMSOL Mul-tiphysics),并分别运用这两个软件系统对受拉应力作用下带孔平板试件和共心圆轴试件在热应力作用下的受力变形特征进行了数值模拟对比分析,指出真... 简要介绍了真实破裂过程分析软件系统(RFPA)和多物理场耦合数值模拟软件系统(COMSOL Mul-tiphysics),并分别运用这两个软件系统对受拉应力作用下带孔平板试件和共心圆轴试件在热应力作用下的受力变形特征进行了数值模拟对比分析,指出真实破裂过程分析软件系统的特色在于对材料破坏过程的分析处理,而多物理场耦合数值模拟软件系统的特色在于对于复杂多场耦合问题的求解,将这两种软件系统各自的特色特点结合起来应用于材料破坏过程中的多场耦合问题分析是以后应当努力发展的方向. 展开更多
关键词 真实破裂过程分析系统 多物理场耦合数值模拟系统 应力分布 数值模拟
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Multiphysics simulation of VVER-1200 fuel performance during normal operating conditions 被引量:2
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作者 Khaled M.Yassin Mohamed H.Hassan +3 位作者 Mohammad M.Ghoneim Mostafa S.Elkolil Adel Alyan Said A.Agamy 《Nuclear Science and Techniques》 SCIE EI CAS CSCD 2023年第2期139-152,共14页
Nuclear fuel performance modeling and simulation are critical tasks for nuclear fuel design optimization and safety analysis under normal and transient conditions.Fuel performance is a complicated phenomenon that invo... Nuclear fuel performance modeling and simulation are critical tasks for nuclear fuel design optimization and safety analysis under normal and transient conditions.Fuel performance is a complicated phenomenon that involves thermal,mechanical,and irradiation mechanisms and requires special multiphysics modules.In this study,a fuel performance model was developed using the COMSOL Multiphysics platform.The modeling was performed for a 2D axis-symmetric geometry of a UO2fuel pellet in the E110 clad for VVER-1200 fuel.The modeling considers all relevant phenomena,including heat generation and conduction,gap heat transfer,elastic strain,mechanical contact,thermal expansion,grain growth,densification,fission gas generation and release,fission product swelling,gap/plenum pressure,and cladding thermal and irradiation creep.The model was validated using a code-to-code evaluation of the fuel pellet centerline and surface temperatures in the case of constant power,in addition to validation of fission gas release(FGR)predictions.This prediction proved that the model could perform according to previously published VVER nuclear fuel performance parameters.A sensitivity study was also conducted to assess the effects of uncertainty on some of the model parameters.The model was then used to predict the VVER-1200 fuel performance parameters as a function of burnup,including the temperature profiles,gap width,fission gas release,and plenum pressure.A compilation of related material and thermomechanical models was conducted and included in the modeling to allow the user to investigate different material/performance models.Although the model was developed for normal operating conditions,it can be modified to include off-normal operating conditions. 展开更多
关键词 VVER-1200 Fuel performance comsol code Zr-1%Nb cladding UO2 fuel rod
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