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基于两相多孔介质模型的骨组织力学响应数值分析 被引量:3
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作者 李德源 陈海斌 王正国 《生物医学工程学杂志》 EI CAS CSCD 2004年第3期381-386,共6页
引入基于混合物理论的流 -固两相多孔介质模型来描述骨组织在承受各种动载荷时 ,其骨质应力场、变形场以及孔间骨液压力场的分布规律。模型中考虑固体骨质为横观各向同性的液饱和多孔材料 ,研究骨质变形、骨液流动以及流动电位间的耦合... 引入基于混合物理论的流 -固两相多孔介质模型来描述骨组织在承受各种动载荷时 ,其骨质应力场、变形场以及孔间骨液压力场的分布规律。模型中考虑固体骨质为横观各向同性的液饱和多孔材料 ,研究骨质变形、骨液流动以及流动电位间的耦合关系。采用 Galerkin加权残值法 ,导出了骨组织流 -固耦合动力响应的罚有限元公式和流动电位计算式 ,编制了相应的有限元程序。算例表明 ,骨组织特别是松质骨组织的表观黏弹性行为和能量耗散性质 ,很大程度上是由于骨孔间液体扩散和流动引起的 ;同时 ,由于骨组织固 -液两相界面间双电层的存在 ,当液体组分扩散时 ,引起流动电位 ,从而促进骨的生长和吸收。 展开更多
关键词 骨组织 力学响应 加权残值法 流动电位 两相多孔介质模型 生物力学 数值分析
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Quench Front Progression in a Superheated Porous Medium: Experimental Analysis and Model Development
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作者 Andrea Bachrata Florian Fichot +2 位作者 Georges Repetto Michel Quintard Joelle Fleurot 《Journal of Energy and Power Engineering》 2013年第3期514-523,共10页
In case of accident at a nuclear power plant, water sources may not be available for a long period of time and the core heats up due to the residual power. Any attempt to inject water during core degradation can lead ... In case of accident at a nuclear power plant, water sources may not be available for a long period of time and the core heats up due to the residual power. Any attempt to inject water during core degradation can lead to quenching and further fragmentation of core material. The fragmentation of fuel rods and melting of reactor core materials may result in the formation of a "debris bed". The typical particle size in a debris bed might reach few millimeters (characteristic length-scale: 1-5 mm). The two-phase flow model for reflood of the degraded core is briefly introduced in this paper. It is implemented into the ICARE-CATHARE code, developed by IRSN (Institut de radioprotection et de surete nucleaire), to study severe accident scenarios in pressurized water reactors. Currently, the French IRSN sets up two experimental facilities to study debris bed reflooding, PEARL and PRELUDE, and validate safety models. The PRELUDE program studies the complex two phase flow (water/steam), in a porous medium (diameter 180 mm, height 200 mm), initially heated to a high temperature (400℃ or 700℃). On the basis of the experimental results, thermal hydraulic features at the quench front have been analyzed. The two-phase flow model shows a good agreement with PRELUDE experimental results. 展开更多
关键词 Severe accident reflood debris bed two-phase flow model.
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