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基底动脉瘤数值模拟仿真模拟研究
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作者 樊俊杰 陈广新 +1 位作者 郭金兴 张洋 《中国医药科学》 2023年第11期197-200,共4页
目的探讨基底动脉瘤的血液流变。方法于2018年1月至2020年1月在牡丹江医学院附属红旗医院放射科进行原始影像数据采集,以基底动脉磁共振血管成像图像为基础构建基底动脉三维几何模型,动脉瘤组与对照组各20例,应用计算流体力学方法对血... 目的探讨基底动脉瘤的血液流变。方法于2018年1月至2020年1月在牡丹江医学院附属红旗医院放射科进行原始影像数据采集,以基底动脉磁共振血管成像图像为基础构建基底动脉三维几何模型,动脉瘤组与对照组各20例,应用计算流体力学方法对血管进行数值模拟分析。结果获得了基底动脉瘤模型的血流动力学参数,数值模拟结果血流速度、壁面压力(WP)及震荡剪切系数(OSI)三项指标,动脉瘤组其数值均高于对照组,差异有统计学意义(P<0.05)。动脉瘤颈处的血流速度大于瘤腔内的血流速度,表现为高速血流向低速涡流转变,血流主要撞击点为左侧瘤壁。动脉瘤组高WP主要分布在双侧椎动脉,瘤体整体为均匀稍高WP。动脉瘤组高OSI集中分布瘤颈部及左侧瘤体部,并且OSI不稳定,与低速涡流血管区域重合。结论基底动脉瘤血流不稳定,表现为高WP及波动OSI,以瘤颈及左侧瘤壁区域明显,血管壁损伤概率较大,瘤体破裂风险增加,临床应着重关注该区域,进行个体化治疗。本研究为基底动脉瘤等心脑血管疾病提供理论依据,并为动脉瘤血管支架手术提供血流动力学支持。 展开更多
关键词 基底动脉瘤 速血流 低速涡流 高壁面压力 不稳定剪切指数 心血管疾病
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Large-eddy simulation for the aero-vibro-acoustic analysis:plate-cavity system excited by turbulent channel flow
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作者 Lixing Zhu Ting Wu Guowei He 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2022年第10期38-55,共18页
The large-eddy simulation(LES)with the dynamic Smagorinsky model is used to predict the interior sound of an idealized vehicle cabin under the excitation of the wall pressures from turbulent channel flows.In compariso... The large-eddy simulation(LES)with the dynamic Smagorinsky model is used to predict the interior sound of an idealized vehicle cabin under the excitation of the wall pressures from turbulent channel flows.In comparison with direct numerical simulation(DNS),the LES results overpredict the sound pressure level(SPL)at low frequencies and underpredict the SPL at high frequencies.The incorrect predictions result from the incorrect prediction of LES on surface pressures,where the LES over-estimates the wavenumber and frequencies spectra of surface pressures at small wavenumbers and frequencies and under-estimates the spectra at large wavenumbers and frequencies.However,the LES results are close to the filtered-DNS results,implying that the unresolved scales are also important to surface pressures and interior sound.The Euler-Bernoulli beam under the excitation of exterior pressures,which serves as a simple model for aero-vibro-acoustics in the case of hydrodynamical fast,is used to explain the observed predictions and show that the Corcos model cannot represent the variation of turbulence pressure spectra at wavenumbers and frequencies.Therefore,the new requirement for the LES method,when applied to fluid-structural-acoustic interaction problems at high Reynolds numbers,is the correct prediction of wavenumber and frequency spectra of turbulence wall pressure. 展开更多
关键词 Large-eddy simulation Turbulent flow Aero-vibro-acoustics Surface pressure
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