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Mathematical Model of Blood Flow in Small Blood Vessel in the Presence of Magnetic Field

Mathematical Model of Blood Flow in Small Blood Vessel in the Presence of Magnetic Field
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摘要 A mathematical model for blood flow in the small blood vessel in the presence of magnetic field is presented in this paper. We have modeled the two phase model for the blood flow consists of a central core of suspended erythrocytes and cell-free layer surrounding the core. The system of differential equations has been solved analytically. We have obtained the result for velocity, flow rate and effective viscosity in presence of peripheral layer and magnetic field .All the result has been obtained and discussed through graphs. A mathematical model for blood flow in the small blood vessel in the presence of magnetic field is presented in this paper. We have modeled the two phase model for the blood flow consists of a central core of suspended erythrocytes and cell-free layer surrounding the core. The system of differential equations has been solved analytically. We have obtained the result for velocity, flow rate and effective viscosity in presence of peripheral layer and magnetic field .All the result has been obtained and discussed through graphs.
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出处 《Applied Mathematics》 2011年第2期264-269,共6页 应用数学(英文)
关键词 BLOOD Plasma Magnetic Field Effective VISCOSITY PERIPHERAL Layer Blood Plasma Magnetic Field Effective Viscosity Peripheral Layer
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