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Thermal-Flow Characteristics of Ferrofluids in a Rotating Eccentric Cylinder under External Magnetic Force

机译:外部磁力作用下旋转偏心圆柱体中铁磁流体的热流特性

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摘要

Heat dissipation has become an important issue due to the miniaturization of various electronic devices. Various methods such as spray and nozzle coolers, heat sinks and so on are used for heat dissipation. However, the emergence of ferrofluids drastically improves the operating characteristics of electromagnetic systems and devices. A ferrofluid is a suspension containing 10-nm magnetic particles in a colloidal solution. This material exhibits paramagnetic behavior and is sensitive to magnetic field and temperature. In this study, heat transfer characteristics of ferrofluids in a rotating eccentric cylinder were investigated using the commercial code, COMSOL Multiphysics. Numerical results of the local Nusselt number, magnetophoretic force and velocity distributions were obtained from various eccentricities of the cylinder, and the results were graphically depicted with various flow conditions.
机译:由于各种电子设备的小型化,散热已经成为重要的问题。散热方法有喷雾和喷嘴冷却器,散热器等各种方法。但是,铁磁流体的出现极大地改善了电磁系统和设备的工作特性。铁磁流体是在胶体溶液中包含10 nm磁性颗粒的悬浮液。这种材料表现出顺磁性,并且对磁场和温度敏感。在这项研究中,使用商业代码COMSOL Multiphysics研究了旋转偏心圆柱体中铁磁流体的传热特性。从圆柱体的各种偏心度获得了局部Nusselt数,磁致热力和速度分布的数值结果,并在各种流动条件下以图形方式描绘了结果。

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