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存在或不存在作用于磁化率梯度的磁力时水的磁热对流

Magnetothermal Convection of Water with the Presence or Absence of a Magnetic Force Acting on the Susceptibility Gradient.

作者信息

Maki Syou

机构信息

Laboratory of Molecular Chemistry, Faculty of Pharmacy, Osaka Ohtani University, 3-11-1, Nishikiori-kita, Tondabayashi City, Osaka Pref. 584-8540, Japan.

出版信息

PLoS One. 2016 Sep 8;11(9):e0160090. doi: 10.1371/journal.pone.0160090. eCollection 2016.

Abstract

Heat transfer of magnetothermal convection with the presence or absence of the magnetic force acting on the susceptibility gradient (fsc) was examined by three-dimensional numerical computations. Thermal convection of water enclosed in a shallow cylindrical vessel (diameter over vessel height = 6.0) with the Rayleigh-Benard model was adopted as the model, under the conditions of Prandtl number 6.0 and Ra number 7000, respectively. The momentum equations of convection were nondimensionalized, which involved the term of fsc and the term of magnetic force acting on the magnetic field gradient (fb). All the computations resulted in axisymmetric steady rolls. The values of the averaged Nu, the averaged velocity components U, V, and W, and the isothermal distributions and flow patterns were almost completely the same, regardless of the presence or absence of the term of fsc. As a result, we found that the effect of fsc was extremely small, although much previous research emphasized the effect with paramagnetic solutions under an unsteady state. The magnitude of fsc depends not only on magnetic conditions (magnitudes of magnetic susceptibility and magnetic flux density), but also on the thermal properties of the solution (thermal conductivity, thermal diffusivity, and viscosity). Therefore the effect of fb becomes dominant on the magnetothermal convection. Active control over the density gradient with temperature will be required to advance heat transfer with the effect of fsc.

摘要

通过三维数值计算研究了在存在或不存在作用于磁化率梯度(fsc)的磁力情况下的磁热对流热传递。采用瑞利 - 贝纳德模型,以封闭在浅圆柱形容器(直径与容器高度之比 = 6.0)中的水的热对流为模型,分别在普朗特数为6.0和瑞利数为7000的条件下进行研究。对流的动量方程进行了无量纲化处理,其中涉及fsc项和作用于磁场梯度的磁力项(fb)。所有计算结果均为轴对称稳定滚动。无论是否存在fsc项,平均努塞尔数、平均速度分量U、V和W的值以及等温分布和流型几乎完全相同。结果,我们发现尽管之前许多研究强调了在非稳态下顺磁溶液的fsc效应,但fsc的影响极其微小。fsc的大小不仅取决于磁条件(磁化率和磁通密度的大小),还取决于溶液的热性质(热导率、热扩散率和粘度)。因此,fb的影响在磁热对流中占主导地位。若要借助fsc的效应推进热传递,将需要对密度梯度随温度进行主动控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d318/5015909/ba0eb2382041/pone.0160090.g001.jpg

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