首页> 外文会议>ASME international mechanical engineering congress and exposition;IMECE2008 >ANALYSIS AND DEVELOPMENT OF A MAGNETOCALORIC PUMP FOR ELECTRONIC COOLING APPLICATIONS USING A MN-ZN FERRITE FERROFLUID
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ANALYSIS AND DEVELOPMENT OF A MAGNETOCALORIC PUMP FOR ELECTRONIC COOLING APPLICATIONS USING A MN-ZN FERRITE FERROFLUID

机译:MN-ZN铁氧体铁磁流体用于电子冷却应用的磁热泵的分析与开发

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A device able to pump a fluid with no moving mechanical parts represents a very encouraging alternative since such device would be practically maintenance free. A magnetocaloric pump could achieve this purpose by providing a magnetic pressure gradient to a ferrofluid placed inside a magnetic field while experiencing a temperature change. If the temperature change is produced by extracting heat out of an element that needs refrigeration, coupling this generated heat with the magnetocaloric pump will result in a passive cooling system. For applications near ambient temperature the ferrofluid must have specific characteristics such as low "Curie temperature", high pyromagnetic coefficient, high thermal conductivity and low viscosity.This work presents an analysis of the ferrohydrodynamic governing equations, emphasizing the importance of the Kelvin force in the magnetocaloric pump analysis. The general equations are simplified and scaled to show which parameters are important in the generation of the magnetic pressure gradient. Based on the scaling analysis, a variable magnetic field and a higher saturation magnetization is needed to generate a higher magnetic pressure gradient. The working fluid used is an aqueous Mn_(0.5)Zn_(0.5)Fe_2O_4 ferrite ferrofluidsynthesized by the co-precipitation technique. This ferrite shows lower "Curie temperature" than commercially available magnetite. Important issues in the design of a magnetocaloric pump prototype with a variable magnetic field source are also discussed.
机译:能够泵送流体而没有移动的机械部件的装置是非常令人鼓舞的选择,因为这种装置实际上是免维护的。磁热泵可以通过在经历温度变化的同时向放置在磁场内部的铁磁流体提供磁压梯度来实现此目的。如果温度变化是通过将热量从需要制冷的元件中抽出而产生的,则将产生的热量与磁热泵耦合将形成被动冷却系统。对于接近环境温度的应用,铁磁流体必须具有特定的特性,例如低“居里温度”,高热磁系数,高导热率和低粘度。 这项工作提出了铁水动力控制方程的分析,强调了开尔文力在磁热泵分析中的重要性。通用方程式经过简化和缩放,以显示哪些参数在电磁压力梯度的生成中很重要。基于比例分析,需要可变的磁场和较高的饱和磁化强度才能生成较高的磁压梯度。所使用的工作流体是Mn_(0.5)Zn_(0.5)Fe_2O_4铁氧体铁磁流体的水溶液 通过共沉淀技术合成。该铁氧体显示出比市售磁铁矿更低的“居里温度”。还讨论了具有可变磁场源的磁热泵原型设计中的重要问题。

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