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滑坡体散体化对涌浪波动特征的影响 被引量:4
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作者 郑飞东 王平义 李云 《水科学进展》 EI CAS CSCD 北大核心 2022年第5期826-834,共9页
岩质滑坡在下滑过程中会发生散体化,进而分解成形状及大小各异的块体。已有滑坡体兴波方面的研究多采用单一刚性块体或均匀散体颗粒对滑坡体进行模拟,较少关注滑坡体散体化对涌浪的影响机制。本研究通过开展三维水池物理模型试验,初步... 岩质滑坡在下滑过程中会发生散体化,进而分解成形状及大小各异的块体。已有滑坡体兴波方面的研究多采用单一刚性块体或均匀散体颗粒对滑坡体进行模拟,较少关注滑坡体散体化对涌浪的影响机制。本研究通过开展三维水池物理模型试验,初步探索滑坡体的散体化过程对涌浪波动特性的影响作用。结果表明:初生涌浪的最大波幅和最大波高随滑坡体散体化指标的增大而减小;第一波峰幅值和第一波高的沿程衰减规律符合孤立波理论,且其衰减速率分别依赖于涌浪的最大波幅和最大波高;三维水池试验中第一波峰幅值和第一波高的沿程衰减速度较二维水槽中更快。 展开更多
关键词 滑坡涌浪 岩质滑坡 散体化过程 波浪衰减
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Axial Liquid Dispersion in Gas-Liquid-Solid Circulating Fluidized Bed
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作者 M.Vatanakul 孙国刚 +1 位作者 郑莹 M.Couturier 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2005年第1期124-127,共4页
The effects of liquid viscosities, solid circulating rates, liquid and gas velocities and phase holdups on the axial dispersion coefficient, Dax, were investigated in a gas-liquid-solid circulating fluidized bed (GLSC... The effects of liquid viscosities, solid circulating rates, liquid and gas velocities and phase holdups on the axial dispersion coefficient, Dax, were investigated in a gas-liquid-solid circulating fluidized bed (GLSCFB).Liquid viscosity promotes the axial liquid backmixing when solid particles and gas bubbles are present. Increases in gas velocities and solid circulating rates lead to higher Dax. The effects of liquid velocity on Dax are associated with liquid viscosity. Compared with conventional expanded beds, the GLSCFBs hold less axial liquid dispersion,approaching ideal plug-flow reactors. 展开更多
关键词 axial liquid dispersion gas-liquid-solid circulating fluidized bed liquidviscosity
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Melting kinetics of bulk SiC using molecular dynamics simulation 被引量:2
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作者 YAN WanJun GAO TingHong +2 位作者 GUO XiaoTian QIN YunXiang XIE Quan 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2013年第9期1699-1704,共6页
The melting kinetics of bulk SiC is studied by using classical molecular dynamics simulation.The mean square displacement,diffusion coefficient,Lindemann index and non-Gaussian parameter are used to analyze the melt n... The melting kinetics of bulk SiC is studied by using classical molecular dynamics simulation.The mean square displacement,diffusion coefficient,Lindemann index and non-Gaussian parameter are used to analyze the melt nucleation and macrokinetics in the melting process.Melting occurs when the superheated crystal spontaneously generates many Lindemann particles in which they coalesce together to form melt nucleation inside the crystal.The melting process is similar to the solidification process,but also experiences three processes such as nucleation,growth and relaxation.The melting process can be divided into premelting,accelerated melting and relaxation stages.Using the sectional method can properly reflect the kinetic characteristics of the melting process. 展开更多
关键词 MELTING KINETICS molecular dynamics bulk SiC
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