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首页> 外文期刊>International journal of numerical methods for heat & fluid flow >Influence of selected parameters on phenomena of two-phase flow and heat exchange in TSL furnace - Numerical investigation
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Influence of selected parameters on phenomena of two-phase flow and heat exchange in TSL furnace - Numerical investigation

机译:所选参数对TSL炉内两相流和热交换现象的影响-数值研究

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摘要

Purpose - The purpose of this study is application of a numerical simulation for determination of the influence of geometric parameters of a furnace and hydrodynamics of the gas introduced by a vertical submerged lance on the process of feed mixing and temperature distribution. Design/methodology/approach - A numerical simulation with Phoenics software was applied for modeling of liquid phase movement and heat exchange between the gas supplied through a lance and the slag feed in a top submerged lance (TSL) furnace. The simulation of a two-phase flow of a slag-gas mixture based on the inter phase slip algorithm module was conducted. The influence of selected parameters, such as depth of lance submergence, gas flow rate and change of furnace geometry, on the phenomena of movement was studied. Findings - Growth of dynamics of mixing with the depth of lance submergence and with increase of gas velocity in the lance was observed. Formation of a recirculation zone in the liquid slag was registered. Movement of the slag caused by the gas flow brought homogenization of the temperature field. Originality/value - The study applied the simulation of a two-phase flow in the liquid slag-gas system in steady state, taking into account heat transfer between phases. It provides possibilities for optimization and selection of process parameters within the scope of the developed new technology using a TSL furnace.
机译:目的-这项研究的目的是应用数值模拟来确定炉子的几何参数和垂直浸入式喷枪引入的气体的流体动力学对进料混合和温度分布过程的影响。设计/方法/方法-使用Phoenics软件进行数值模拟,对通过喷枪供应的气体与顶部浸入式喷枪(TSL)炉渣进料之间的液相运动和热交换进行建模。基于相间滑动算法模块,对炉渣混合气的两相流进行了仿真。研究了喷枪浸没深度,气体流速和炉膛几何形状变化等所选参数对运动现象的影响。发现-随着喷枪浸没深度的增加以及喷枪中气体速度的增加,混合动力的增长得到了观察。记录在液体炉渣中形成再循环区。由气流引起的炉渣运动使温度场均匀化。原创性/价值-该研究应用了液态渣-气系统在稳态下的两相流模拟,同时考虑了两相之间的传热。它为使用TSL炉开发的新技术提供了优化和选择工艺参数的可能性。

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