首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >A NON-DIMENSIONAL ANALYSIS TO CHARACTERIZE THERMOMAGNETIC CONVECTION OF A TEMPERATURE SENSITIVE MAGNETIC FLUID IN A FLOW LOOP
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A NON-DIMENSIONAL ANALYSIS TO CHARACTERIZE THERMOMAGNETIC CONVECTION OF A TEMPERATURE SENSITIVE MAGNETIC FLUID IN A FLOW LOOP

机译:一种非尺寸分析,以表征流动回路中温度敏感磁流体的热磁对流

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This paper presents results from theoretical and numerical studies of a single-phase, temperature sensitive magnetic fluid operating under steady-state laminar flow conditions in a partially heated thermomagnetic circulation loop under the influence of an external magnetic field (created by a solenoid). A one-dimensional theoretical model has been developed using scaling arguments to characterize thermomagnetic circulation in this loop in terms of the geometric length scales, magnetic fluid properties, and strength of the imposed magnetic field. In parallel to this theoretical analysis, supporting numerical simulations using COMSOL Multiphysics simulation software have been undertaken to obtain data for use in this 1D model. A correlation for the non-dimensional heat transfer (Nusselt number) as a function of the appropriate magnetic Rayleigh number and a correlation for the mass flow rate based on the system's properties are developed.
机译:本文提出了在外部磁场的影响下(由螺线管产生)的部分加热的热磁体循环回路下在部分加热的热磁循环回路下操作的单相,温度敏感磁性流体的理论和数值研究结果。已经使用缩放参数开发了一维理论模型,以便在该环中表征热磁体循环,以几何长度,磁流体特性和施加的磁场的强度。与该理论分析并行,已经开展了支持使用COMSOL Multiphysics仿真软件的数值模拟,以获得该1D模型中使用的数据。开发了非尺寸传热(NUSERET号)作为适当磁瑞利数的函数的相关性和基于系统的特性的质量流量的相关性。

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