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首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >Numerical Methods for Simulating the Reduction of Iron Ore in Blast Furnace Shaft
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Numerical Methods for Simulating the Reduction of Iron Ore in Blast Furnace Shaft

机译:高炉竖井中铁矿石还原模拟的数值方法

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The blast furnace process is a counter-current moving bed chemical reactor to reduce iron oxides to iron, which involves complex transport phenomena and chemical reactions. The iron ore and coke are alternatively charged into the blast furnace, forming a layer by layer structural burden which is slowly descending in the counter-current direction of the ascending gas flow. A new methodology was proposed to efficiently simulate the gas and solid burden flow in the counter-current moving bed in blast furnace shaft. The gas dynamics, burden movement, chemical reactions, heat and mass transfer between the gas phase and solid phase are included. The new methodology has been developed to explicitly consider the effects of the layer thickness thermally and chemically in the CFD model.
机译:高炉工艺是一种逆流移动床化学反应器,用于将氧化铁还原成铁,这涉及复杂的运输现象和化学反应。铁矿石和焦炭交替地装入高炉,形成一层一层的结构负荷,该负荷在上升气流的逆流方向上缓慢下降。提出了一种新的方法来有效模拟高炉竖井中逆流移动床中的气体和固体物料流。包括气相和固相之间的气体动力学,负荷运动,化学反应,热量和质量传递。已经开发出新的方法,以明确考虑CFD模型中热和化学层厚度的影响。

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