Problem Parametrelerinin MHD Kanal Akışının Zamana Bağlı Davranışına Etkileri

Elif EBREN KAYA, Münevver TEZER-SEZGİN
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Abstract

The present study focuses the effects of Reynolds number Re and magnetic Reynolds number Rm on the transient behavior of the MHD flow. The incompressible, electrically conducting and viscous fluid flows through a long pipe subjected to magnetic field B0(t)=B0f(t). B0 is the intensity and f(t) is the time varying function of the magnetic field which is chosen as polynomial, trigonometric, exponential and logarithmic function to illustrate the problem parameters effects. The Re and Rm effects on the behavior of the flow at transient levels are studied with these functions by taking Hartmann number Ha value as 20. The unsteady MHD equations in coupled form are treated by using the dual reciprocity boundary element method (DRBEM). The study reveals that, when Re or Rm increases the time level where the flow elongates is postponed to a further time level. Moreover, the increase in Re flattens the flow as in the increase of Hartmann number. However, the increase in Rm increases the flow magnitude. The transient flow and induced current contours are demonstrated for several Re and Rm values. After the flow elongates, the flow and induced current lines preserve the behavior for polynomial, exponential and logarithmic type f(t) while trigonometric type f(t) causes the flow to show periodic behavior.
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影响暂时连接到MHD信道流问题参数
本文主要研究了雷诺数Re和磁雷诺数Rm对MHD流动瞬态行为的影响。不可压缩的导电粘性流体在磁场B0(t)=B0f(t)作用下流经长管。B0为磁场强度,f(t)为磁场时变函数,分别采用多项式、三角、指数和对数函数表示问题参数的影响。以哈特曼数Ha值为20,利用这些函数研究了Re和Rm对瞬态水平流动行为的影响。采用双互易边界元法对耦合形式的非定常MHD方程进行了处理。研究表明,当Re或Rm增加时,流动拉长的时间水平被推迟到另一个时间水平。此外,随着哈特曼数的增加,Re的增加使流动变得平缓。然而,Rm的增加增加了流量。演示了几种Re和Rm值下的瞬态流动和感应电流轮廓。在流动拉长后,流动和感应电流线保持多项式型、指数型和对数型f(t)的行为,而三角型f(t)使流动表现出周期性行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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发文量
37
审稿时长
10 weeks
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