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首页> 外文期刊>Journal Of The South African Institute Of Mining & Metallurgy >Modelling of fluid flow phenomena in Peirce-Smith copper converters and analysis of combined blowing concept
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Modelling of fluid flow phenomena in Peirce-Smith copper converters and analysis of combined blowing concept

机译:Peirce-Smith铜转炉中的流体流动现象建模和组合吹塑概念分析

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摘要

This investigation consists of a numerical and physical modelling exercise on flow patterns, mixing, solid-liquid mass transfer, and slag-matte phase distribution in a 0.2-scale cold model of an industrial Peirce-Smith converter (PSC). Water, kerosene, air, and sintered benzoic add compacts were used to simulate matte, slag, injected gas, and solid additions into the PSC. The 2D and 3D numerical simulations were carried out using volume of fluid (VOF) and realizable k-ε (RKE) turbulence models to account for the multiphase and turbulence nature of the flow respectively. These models were implemented using the commercial computational fluid dynamics numerical code FLUENT.Numerical and physical simulations were able to predict, in agreement, the mixing and dispersion characteristics of the system in relation to various blowing conditions. Measurement of mass transfer indicated that fluid flow in the PSC is stratified. Blowing configurations and slag volume both had significant effects on mixing propagation, wave formation, and splashing.As a potential process alternative to increase conversion efficiency, we propose a combined blowing configuration using top lance and lateral nozzles. The numerical simulations were conducted on combined as well as lateral blowing conditions, and the results of the combined concept are encouraging.
机译:这项研究包括对工业Peirce-Smith转换器(PSC)的0.2比例冷模型中的流型,混合,固液传质和熔渣相分布进行数值和物理建模的练习。将水,煤油,空气和烧结的苯甲酸添加压块用于模拟磨砂,炉渣,注入的气体和向PSC中添加的固体。使用流体体积(VOF)和可实现的k-ε(RKE)湍流模型进行了2D和3D数值模拟,分别考虑了流体的多相和湍流特性。这些模型是使用商业计算流体力学数字代码FLUENT实施的。数值和物理模拟能够一致地预测系统在各种鼓风条件下的混合和分散特性。传质的测量表明,PSC中的流体流已分层。吹气形态和炉渣体积均对混合传播,波浪形成和飞溅都有显着影响。作为提高转化效率的潜在工艺选择,我们提出了使用顶部喷枪和侧向喷嘴的组合吹气形态。在组合和横向吹气条件下进行了数值模拟,组合概念的结果令人鼓舞。

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