首页> 外文期刊>Journal of Applied Mechanics and Technical Physics >Evaluation of the Temperature Regime of the Rods of the Inductor of an MHD Stirrer for Possible Use in an Industrial Aluminum Furnace
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Evaluation of the Temperature Regime of the Rods of the Inductor of an MHD Stirrer for Possible Use in an Industrial Aluminum Furnace

机译:可能用于工业铝炉的MHD搅拌器电感棒温度状况的评估

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摘要

In the production of aluminum alloys, the melt must be stirred in the bath of a furnace. For this purpose, it is convenient to use MHD stirrers. However, MHD stirrers that are used in production in practice are mainly linear traveling-field inductors, which cannot be sufficiently effective because of their design features. Their size is much smaller than the linear dimensions of the bath, and the poles of their magnetic circuits are outside the bath walls and the insulation layer; therefore, the traveling magnetic field that influences the molten metal is significantly reduced. For this reason, the electrical power consumed by these MHD stirrers is high (hundreds of kilovolt-amperes). A device in the form of a system of rods (buses) connected in parallel to a three-phase power network and placed in close proximity to the molten metal immediately under the bottom of the bath may be an alternative to these stirrers. The main problem associated with this device is the cooling of rods via the removal of the Joule heat that is released during the passage of an electric current in the rods and the heat received from the molten metal in the bath in the furnace. The simplest way to withdraw the released heat is the convective movement of air in the tubular rods (it is not necessary to use special additional equipment). When conducting multivariant engineering calculations in designing such devices, it is necessary to determine the values of a cooling convective air flow in the hollow rods of the inductor of an MHD stirrer. In the present paper, we propose a numerical calculation of the temperature field in the aluminum furnace and a simple model for the convective air flow that passes through the rods of the inductor of an MHD stirrer. Based on this model and using the results of the physical experiments performed in this study, a simple semiempirical engineering formula for the approximate computation of the convective air-motion velocity in the hollow rods of an MHD stirrer is derived.
机译:在铝合金的生产中,必须在熔炉的浴中搅拌熔体。为此,使用MHD搅拌器非常方便。但是,实际上在生产中使用的MHD搅拌器主要是线性行进磁场感应器,由于其设计特点,其效率不足。它们的尺寸远小于熔池的线性尺寸,其磁路的磁极在熔池壁和绝缘层的外部;因此,显着降低了影响熔融金属的行进磁场。因此,这些MHD搅拌器消耗的电能很高(数百千安培)。这些搅拌器的替代方案可以是与三相电力网络并联连接并紧邻熔液放置的棒(母线)系统形式的设备。与该装置有关的主要问题是通过去除在焦耳中的电流通过期间释放的焦耳热以及从炉中熔池中的熔融金属接收的热来冷却焦耳。释放热量的最简单方法是使空气在管状杆中进行对流运动(无需使用特殊的附加设备)。在设计此类设备时进行多变量工程计算时,有必要确定MHD搅拌器感应器中空棒中的冷却对流气流值。在本文中,我们提出了铝炉温度场的数值计算和对流通过MHD搅拌器感应棒的对流气流的简单模型。基于该模型并利用本研究中进行的物理实验的结果,得出了一个简单的半经验工程公式,用于近似计算MHD搅拌器中空棒中对流空气运动速度。

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