利用动网格技术模拟动脉粥样硬化 发展过程
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国家国际科技合作专项(2015DFA30550),国家高端外国专家项目(20154100007),河南省国际科技合作项目(152102410013),河南省高等学校科研创新团队(14IRTSTHN001)


Application of dynamic mesh technique in the development process of atherosclerosis by numerical simulation
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    摘要:

    目的 通过在FLUENT计算流体动力学分析软件中调用自主开发的用户自定义函数(user defined function,UDF)动网格程序,实现网格节点根据壁面切应力(wall shear stress,WSS)判据进行移动更新,并将此方法应用于模拟动脉粥样硬化(atherosclerosis,AS)的发展过程中。方法 二次开发的UDF程序能够在计算过程中提取壁面各节点处WSS结果,若满足阀值判据条件则进行移动调整。采用弹性光顺与局部重构相结合的网格再生方法调控网格模型的更新,保证变形过程中的网格质量。结果 UDF程序成功提取出WSS并调整网格进行相应变形。初始狭窄造成的尾部涡流导致血管壁出现近端局部扩张,远端再狭窄的形貌特征,临床血管造影存在相似形貌。结论 自主开发的UDF程序达到了预期效果,勾勒出了WSS影响下AS的形貌特征。在今后研究中可以考虑在动网格的变形控制方面添加更多影响因素,为AS临床预后及风险评测提供数值依据。

    Abstract:

    Objective In the computational fluid dynamics software FLUENT, the independently developed user defined function (UDF) dynamic mesh program is called to achieve the mobile update of grid note based on the wall shear stress (WSS). Then this method is applied to simulate the development process of atherosclerosis (AS). Methods The UDF program by secondary development could extract WSS results of every note on the wall during the computing process, and if the threshold value criterion condition was met, the node would be adjusted to a new position. The mesh regeneration method combining with the spring smoothing and the local remeshing was adopted to control the update of the grid, so as to ensure the grid quality during deformation. Results The UDF program successfully extracted the WSS and arranged the corresponding deformation for the grid. The morphology of local extension in the proximal part and restenosis in the distal end were resulted from the vortex in the rear of the initial stenosis. Those features were similar to the indication of clinical angiography. Conclusions The independently developed UDF program has reached the expected effects, depicting the topography characteristics of AS influenced by WSS. In future researches, more influential factors should be considered in dynamic mesh deformation control to provide numerical references for clinical prognosis and risk evaluation of AS.

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徐翔宇,郭攀,王小峰,唐永斌,敦勃文,李倩.利用动网格技术模拟动脉粥样硬化 发展过程[J].医用生物力学,2017,32(4):336-341

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  • 收稿日期:2016-09-05
  • 最后修改日期:2016-11-04
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  • 在线发布日期: 2017-08-21
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