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Numerical analysis of magnetic field effects on hydro-thermal behavior of a magnetic nanofluid in a double pipe heat exchanger

机译:磁场对双管换热器中磁性纳米流体水热行为影响的数值分析

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This study attempts to numerically investigate the hydro-thermal characteristics of a ferrofluid (water and 4 vol% Fe_3O_4) in a counter-current horizontal double pipe heat exchanger, which is exposed to a non-uniform transverse magnetic field with different intensities. The magnetic field is generated by an electric current going through a wire located parallel to the inner tube and between two pipes. The single phase model and the control volume technique have been used to study the flow. The effects of magnetic field have been added to momentum equation by applying C++ codes in Ansys Fluent 14. The results show that applying this kind of magnetic field causes kelvin force to be produced perpendicular to the ferrofluid flow, changing axial velocity profile and creating a pair of vortices which leads to an increase in Nusselt number, friction factor and pressure drop. Comparing the enhancement percentage of Nusselt number, friction factor and pressure drop demonstrates that the optimum value of magnetic number for Re_(ff)=50 is between Mn=1.33 × 10~6 and Mn=2.37 × 10~6. So applying non-uniform transverse magnetic field can control the flow of ferrofluid and improve heat transfer process of double pipe heat exchanger.
机译:这项研究试图数值研究在逆流水平双管换热器中铁磁流体(水和4 vol%Fe_3O_4)的水热特性,该换热器暴露于具有不同强度的不均匀横向磁场。磁场是通过流经平行于内管并位于两根管之间的导线的电流产生的。单相模型和控制量技术已用于研究流动。通过在Ansys Fluent 14中应用C ++代码,将磁场的影响添加到了动量方程中。结果表明,施加这种磁场会使开尔文力垂直于铁磁流体流动产生,改变了轴向速度分布并创建了一对涡旋导致Nusselt数,摩擦系数和压降增加。比较Nusselt数,摩擦系数和压降的增强百分比,可以看出,Re_(ff)= 50的磁数的最佳值在Mn = 1.33×10〜6和Mn = 2.37×10〜6之间。因此,施加不均匀的横向磁场可以控制铁磁流体的流动,并改善双管换热器的传热过程。

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