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血管局部扩张对血液流动的影响 被引量:3
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作者 柳兆荣 吕岚 陈泳 《水动力学研究与进展(A辑)》 CSCD 北大核心 2001年第4期412-421,共10页
本文利用 Fung的应力—生长定律 ,导得血管局部扩张发展规律的基本关系。接着 ,通过求解局部扩张血管段内的血液流动方程 ,导得血液流速、压力和血管壁切应力的分析表达式。详细讨论局部扩张对流速、压力和切应力的可能影响。指出局部... 本文利用 Fung的应力—生长定律 ,导得血管局部扩张发展规律的基本关系。接着 ,通过求解局部扩张血管段内的血液流动方程 ,导得血液流速、压力和血管壁切应力的分析表达式。详细讨论局部扩张对流速、压力和切应力的可能影响。指出局部扩张将引起局部扩张段内管壁切应力的非均匀分布 ,并可能因此促使血管壁的进一步扩张。本文结果对于分析血管局部扩张与所处的血液动力学环境之间的定量关系有重要的帮助。 展开更多
关键词 局部血管扩张 切应力 应力-生长定律 血液动力学环境 血液流动方程
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A Mathematical Model for Pulsating Flow of Ionic Fluid under an Axial Electric Field: EMF Effect on Blood Flow
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作者 Mona A. EI-Naggar Medhat A. Messiery 《Journal of Physical Science and Application》 2012年第4期61-70,共10页
The present work introduces a mathematical model for ionic fluid that flows under the effect of both pulsating pressure and axial electromagnetic field. The fluid is treated as a Newtonian fluid applying Navier-Stokes... The present work introduces a mathematical model for ionic fluid that flows under the effect of both pulsating pressure and axial electromagnetic field. The fluid is treated as a Newtonian fluid applying Navier-Stokes equation. The fluid is considered as a neutral mixture of positive and negative ions. The effect of axial electric field is investigated to determine velocity profiles. Hydroelectric equation of the flow is deduced under dc and ac external electric field. Hence the effect of applied frequency (0-1 GHz) and amplitude (10-350 V/m) is illustrated. The ultimate goal is to approach the problem of EMF field interaction with blood flow. The applied pressure waveform is represented as such to simulate the systolic-diastolic behavior. Simulation was carried out using Maple software using blood plasma parameters; hence velocity profiles under various conditions are reported. 展开更多
关键词 Newtonian fluid navier-stokes ionic fluid blood flow electric field hydroelectric flow simulation velocity profiles EMF bioeffects.
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A HYDROMAGNETIC MATHEMATICAL MODEL FOR BLOOD FLOW OF CARREAU FLUID 被引量:2
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作者 NAJMA SALEEM T. HAYAT A. ALSAEDI 《International Journal of Biomathematics》 2014年第1期173-186,共14页
This paper constructs a mathematical model for blood flow through an artery with mild stenosis. Constitutive equations for Carreau fluid are employed in the mathematical modeling. Analysis has been carried out in the ... This paper constructs a mathematical model for blood flow through an artery with mild stenosis. Constitutive equations for Carreau fluid are employed in the mathematical modeling. Analysis has been carried out in the presence of constant magnetic field. Symmetric and asymmetric shapes of stenosis are taken. Governing flow model is computed for the series solution. Whe flow quantities of interest, for instance, axial velocity, pressure gradient, pressure drop, impedance and shear stress at the walls of stenotic artery are described for various pertinent parameters entering into the problem. 展开更多
关键词 Carreau fluid magnetic field stenotic artery.
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