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Effect of Foamy Slag Height on Hot Spots Formation inside the Electric Arc Furnace Based on a Radiation Model

机译:基于辐射模型的泡沫渣高度对电弧炉内热点形成的影响

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Recent Electric Arc Furnaces are equipped with ultra high power transformers to provide maximum values of electric power and minimize the melting time. The active power is increased by increasing arc length and arc voltage, however in these conditions energy losses due to radiation can also be increased with a consequent decrease in thermal efficiency. The energy radiated from the electric arcs is transferred to the walls inside the EAF promoting hot spots which represent a catastrophic operational condition. This work reports a radiation model which describes the formation of hot spots as a function of arc length and foamy slag height in an industrial EAF of 210 ton. of nominal capacity. Temperature profiles on the surface of the water cooled panels and values for the incident radiation were computed as a function of foamy slag height, used subsequently to define conditions to eliminate the formation of hot spots.
机译:最近的电弧炉配备有超高功率变压器,以提供最大的电功率值并最大程度地减少熔化时间。有功功率通过增加电弧长度和电弧电压来增加,但是在这些情况下,由于辐射引起的能量损失也可能增加,从而导致热效率降低。从电弧辐射的能量被传递到EAF内部的壁上,从而促进了代表灾难性操作条件的热点。这项工作报告了一个辐射模型,该模型描述了210吨工业电弧炉中热点的形成与电弧长度和泡沫渣高度的关系。额定容量。计算水冷板表面的温度曲线和入射辐射的值作为泡沫渣高度的函数,随后将其用于定义消除热点形成的条件。

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