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SIMULATION OF RADIATION HEAT TRANSFER IN A VAR FURNACE USING AN ELECTRICAL RESISTANCE NETWORK

机译:基于电阻网络的无功炉辐射传热模拟

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The use of electrical resistance networks to simulate heat transfer is a well known analytical technique that greatly simplifies the solution of radiation heat transfer problems. In a VAR furnace, radiative heat transfer occurs between the ingot, electrode, and crucible wall; and the arc when the latter is present during melting. To explore the relative heat exchange between these elements, a resistive network model was developed to simulate the heat exchange between the electrode, ingot, and crucible with and without the presence of an arc. This model was then combined with an ingot model to simulate the VAR process and permit a comparison between calculated and observed results during steady state melting. Results from simulations of a variety of alloys of different sizes have demonstrated the validity of the model. Subsequent simulations demonstrate the application of the model to the optimization of both steady state and hot top melt practices, and raises questions concerning heat flux assumptions at the ingot top surface.
机译:使用电阻网络来模拟传热是一种众所周知的分析技术,它大大简化了辐射传热问题的解决方案。在VAR炉中,辐射热传递发生在铸锭,电极和坩埚壁之间。电弧在熔化过程中存在时的电弧。为了探索这些元素之间的相对热交换,开发了一个电阻网络模型来模拟有无电弧存在时电极,铸锭和坩埚之间的热交换。然后将此模型与铸锭模型结合以模拟VAR过程,并允许在稳态熔化过程中对计算结果和观察到的结果进行比较。对各种大小不同的合金进行仿真的结果证明了该模型的有效性。随后的仿真证明了该模型在优化稳态和热顶熔化实践中的应用,并提出了有关锭顶表面热通量假设的问题。

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