欢迎光临《计算力学学报》官方网站!
付志一,焦群英.薄壁细胞受微吸管与探针共同作用接触模型及数值模拟[J].计算力学学报,2011,28(2):290~295
本文二维码信息
码上扫一扫!
薄壁细胞受微吸管与探针共同作用接触模型及数值模拟
The contact model and numerical simulation of parenchyma cell aspirated by micropipette and squashed by mechanical probe
投稿时间:2009-02-22  修订日期:2010-05-26
DOI:10.7511/jslx201102025
中文关键词:  细胞力学模型  微吸管  微探针  计算生物力学
英文关键词:cell mechanical model  micropipette  microprobe  computational biomechanics
基金项目:国家自然科学基金(10972234)资助项目.
作者单位E-mail
付志一 中国农业大学 理学院,北京100083 fzy@cau.edu.cn 
焦群英 中国农业大学 理学院,北京100083  
摘要点击次数: 1898
全文下载次数: 2195
中文摘要:
      建立了以典型的薄壁球型植物细胞为原型的细胞、微吸管及探针接触模型。模型的细胞壁采用封闭球形薄膜,其本构关系为体积不可压超弹性,膜球内充满有压流体以模拟细胞质。应用轴对称几何非线性方法得出了基本微分方程组,并应用龙格-库塔法进行了求解;同时,应用流固耦合有限元法进行了数值模拟以资比较。两种方法得出了较为一致的变形和应力分布。分析、总结了吸管口径和探针直径对压入深度、细胞内压和接触区变化等数值解的影响。
英文摘要:
      A numerical model was formed from a typical parenchyma spherical plant cell to show the contact behavior of a cell suckled by a micropipette and squashed by a probe. The cell was built as a spherical membrane filled with static liquid. The incompressible hyper-elastic constitutive was used for cell wall, the incompressible hydrostatic fluid was used to simulate inner cytoplasm. The contact model was used to simulate the interaction of membrane touching with micropipette and microprobe. Considering nonlinear geometric and physic relations, the differential control equations were deduced. The numerical solutions were obtained through Runge-Kutta method. As a comparative solution, the cell was also modeled and simulated by fluid-solid coupled finite element method. The solutions of the two methods were fairly agreed with each other. Finally, looking into the solutions of deformation, inside pressure, stresses on the wall and contact forces, the effect of inner diameter of pipette and diameter of probe to these results were discussed.
查看全文  查看/发表评论  下载PDF阅读器
您是第13574765位访问者
版权所有:《计算力学学报》编辑部
本系统由 北京勤云科技发展有限公司设计