首页> 外文期刊>International journal of computational fluid dynamics >Comparison between computational fluid dynamics, fluid-structure interaction and computational structural dynamics predictions of flow-induced wall mechanics in an anatomically realistic cerebral aneurysm model
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Comparison between computational fluid dynamics, fluid-structure interaction and computational structural dynamics predictions of flow-induced wall mechanics in an anatomically realistic cerebral aneurysm model

机译:在解剖学上真实的脑动脉瘤模型中计算流体动力学,流固耦合和流致壁力学计算结构动力学预测之间的比较

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Haemodynamically induced stress plays an important role in the progression and rupture of cerebral aneurysms. The current work describes computational fluid dynamics (CFD), fluid-structure interaction (FSI) and computational structural dynamics (CSD) simulations in an anatomically realistic model of a carotid artery with two saccular cerebral aneurysms in the ophthalmic region. The model was obtained from three-dimensional (3D) rotational angiographic imaging data. CFD and FSI were studied under a physiologically representative waveform of inflow. The arterial wall was assumed elastic or hyperelastic, as a 3D solid or as a shell depending on the type of modelling used. The flow was assumed to be laminar, non-Newtonian and incompressible. The CFD, FSI and CSD models were solved with the finite elements package ADINA. Predictions of velocity field and wall shear stress (WSS) on the aneurysms made using CFD and FSI were compared. The CSD model of the aneurysms using complete geometry was compared with isolated aneurysm models. Additionally, the effects of hypertensive pressure on CSD aneurysm models are also reported. The vortex structure, WSS, effective stress, strain and displacement of the aneurysm walls showed differences, depending on the type of modelling used.
机译:血流动力学诱发的应激在脑动脉瘤的进展和破裂中起重要作用。当前的工作描述了在眼部区域具有两个囊状脑动脉瘤的颈动脉的解剖现实模型中的计算流体动力学(CFD),流固耦合(FSI)和计算结构动力学(CSD)模拟。该模型是从三维(3D)旋转血管造影成像数据中获得的。 CFD和FSI在流入的生理代表性波形下进行了研究。根据所用模型的类型,假定动脉壁为3D实体或壳体为弹性或超弹性。假定流动为层流,非牛顿流动和不可压缩。使用有限元软件包ADINA解决了CFD,FSI和CSD模型。比较了使用CFD和FSI对动脉瘤的速度场和壁切应力(WSS)的预测。将使用完整几何图形的动脉瘤的CSD模型与孤立的动脉瘤模型进行了比较。另外,还报道了高血压对CSD动脉瘤模型的影响。取决于所用模型的类型,涡旋结构,WSS,有效应力,应变和动脉瘤壁的位移均显示出差异。

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