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Flow of a biomagnetic viscoelastic fluid:application to estimation of blood flow in arteries during electromagnetic hyperthermia,a therapeutic procedure for cancer treatment 被引量:3
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作者 J.C.MISRA A.SINHA G.C.SHIT 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2010年第11期1405-1420,共16页
The paper deals with the theoretical investigation of a fundamental problem of biomaguetic fluid flow through a porous medium subject to a magnetic field by using the principles of biomagnetic fluid dynamics (BFD). ... The paper deals with the theoretical investigation of a fundamental problem of biomaguetic fluid flow through a porous medium subject to a magnetic field by using the principles of biomagnetic fluid dynamics (BFD). The study pertains to a situation where magnetization of the fluid varies with temperature. The fluid is considered to be non-Newtonian, whose flow is governed by the equation of a second-grade viscoelastic fluid. The walls of the channel are assumed to be stretchable, where the surface velocity is proportional to the longitudinal distance from the origin of coordinates. The problem is first reduced to solving a system of coupled nonlinear differential equations involving seven parameters. Considering blood as a biomagnetic fluid and using the present analysis, an attempt is made to compute some parameters of the blood flow by developing a suitable numerical method and by devising an appropriate finite difference scheme. The computational results are presented in graphical form, and thereby some theoretical predictions are made with respect to the hemodynamical flow of the blood in a hyperthermal state under the action of a magnetic field. The results clearly indicate that the presence of a magnetic dipole bears the potential so as to affect the characteristics of the blood flow in arteries to a significant extent during the therapeutic procedure of electromagnetic hyperthermia. The study will attract the attention of clinicians, to whom the results would be useful in the treatment of cancer patients by the method of electromagnetic hyperthermia. 展开更多
关键词 biomagnetic fluid blood stretching walls porous medium electromagnetic hyperthermia
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生物磁粘弹性流体的流动:应用动脉电磁过热评估血液的流动,癌症治疗进程 被引量:5
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作者 J·C·密斯让 A·辛哈 +2 位作者 G·C·斯特 吴承平 张禄坤 《应用数学和力学》 CSCD 北大核心 2010年第11期1330-1343,共14页
利用生物磁流体动力学(BFD)原理,在生物磁流体经由遭受磁场作用的多孔介质时,研究其流动的基本理论.所研究流体的磁化强度随温度而变化.流体被认为是非Newton流体,其流动由二阶梯度流体方程所控制,并考虑了流体的粘弹性效应.假设管道壁... 利用生物磁流体动力学(BFD)原理,在生物磁流体经由遭受磁场作用的多孔介质时,研究其流动的基本理论.所研究流体的磁化强度随温度而变化.流体被认为是非Newton流体,其流动由二阶梯度流体方程所控制,并考虑了流体的粘弹性效应.假设管道壁是能够伸展的,管壁表面的速度与到坐标原点的纵向距离成正比.首先将问题简化为包括7个参数的、耦合的非线性微分方程组的求解.将血液看作生物磁流体,并用上述方法分析,目的是计算某些血液的流动参数,并配以适当的数值方法,导数用差分格式近似.计算结果用图形给出,从而在磁场作用下,得到过热状态中关系血液的、血流动力学流动的理论预测.结果清楚地表明,在电磁过热治疗进程期间,磁偶极子对动脉中血液流动特征的影响起着重大作用.该研究引起了临床医学的关注,其结果有益于癌症病人采用电磁过热的治疗. 展开更多
关键词 生物磁流体 血液 伸展壁 多孔介质 电磁过热疗法
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生物磁流体传热的耗散粒子动力学模拟 被引量:1
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作者 罗小平 李天富 +1 位作者 易红亮 谈和平 《科学通报》 EI CAS CSCD 北大核心 2017年第5期446-454,共9页
耗散粒子动力学(dissipative particle dynamics,DPD)是一种基于粒子的拉格朗日型介观方法,对生物磁流体等复杂流体流动与传热问题具有较大优势.如果考虑铁磁流体动力学(ferrohydrodynamic,FHD)效应和磁流体动力学(magnetohydrodynamic,... 耗散粒子动力学(dissipative particle dynamics,DPD)是一种基于粒子的拉格朗日型介观方法,对生物磁流体等复杂流体流动与传热问题具有较大优势.如果考虑铁磁流体动力学(ferrohydrodynamic,FHD)效应和磁流体动力学(magnetohydrodynamic,MHD)效应,生物磁流体的流动传热问题非常复杂,因而引起了众多学者的关注.本文提出了一种简单可行的方案建立了DPD流体介观参数与真实流体宏观输运系数之间的联系.在此基础上,采用DPD方法模拟了半环形区域内生物磁流体的流动与传热问题并且考虑了磁数和哈特曼数对区域内温度场和流场的影响.结果表明,随着磁数的增加,热磁对流会产生3个热羽流和4个漩涡.此外,哈特曼数的增加会引起热源表面大部分区域的局部怒塞尔数的显著下降. 展开更多
关键词 耗散粒子动力学 生物磁流体 热磁对流 自然对流
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