...
首页> 外文期刊>Journal Of The South African Institute Of Mining & Metallurgy >Computational fluid dynamic modelling of a waste-heat boiler associated with flash smelting of base metal sulphides
【24h】

Computational fluid dynamic modelling of a waste-heat boiler associated with flash smelting of base metal sulphides

机译:与贱金属硫化物的闪速熔炼相关的废热锅炉的计算流体动力学模型

获取原文
获取原文并翻译 | 示例
           

摘要

The waste-heat boiler is used within the Sulphide flash smelting process as the main dust and energy recovery unit. The large volume of off-gas discharged from the flash smelter is at a very high temperature (1350 deg C) and contains a significant dust load that subjects the downstream waste heat boiler to tough and demanding conditions. The boiler cavity is especially prone to dust accretions, fouling, and corrosion caused by accumulation of molten particles and precipitation of sulphuric acid. Computational fluid dynamics (CFD) is applied within a qualitative study to model the flow and heat transfer distribution throughout the waste-heat boiler. The commercial CFD package, Fluent 6.2.16, was applied to a modified waste heat boiler (23 m X 11 m X 5.4 m) within the Outokumpu Hash smelling process. This investigation focuses on the geometric modifications to the typical boiler design, which includes elevation of the ceiling, placement of flow obstructing baffles and radiation plates parallel within the flow path. Also investigated were various boiler operating conditions such as the circulation of process off gas. air leakage from the dust discharging hoppers and variation in inlet gas composition. The geometric modifications had the desired effect of increasing the volumetric utilization and therefore enhancing heat transfer between the boiler surface and the gas stream and dust segregation. Introducing circulated off gas at a rate of 20 m/s and at a 45 deg angle to the front of the waste boiler further enhanced cooling while reducing the high impact of the furnace- uptake gas-stream on the boiler ceiling. The placement of radiation plates was found to be very effective in enhancing the heat transfer surface and distributing gas flow within the boiler. These results present recommendations towards an improved waste heat boiler design.
机译:硫化锅炉闪速熔炼过程中使用的废热锅炉是主要的粉尘和能量回收装置。从闪速熔炉排出的大量废气处于非常高的温度(1350摄氏度)下,并且包含大量的粉尘负荷,使下游的废热锅炉处于苛刻和苛刻的条件下。锅炉腔室特别容易因积聚的熔融颗粒和硫酸沉淀而引起粉尘积聚,结垢和腐蚀。在定性研究中应用了计算流体动力学(CFD),以模拟整个废热锅炉的流动和传热分布。在Outokumpu Hash嗅觉过程中,将商用CFD软件包Fluent 6.2.16应用于改进的废热锅炉(23 m X 11 m X 5.4 m)。这项研究的重点是对典型锅炉设计的几何修改,包括顶棚的抬高,阻流挡板的放置以及在流道内平行放置的辐射板。还研究了各种锅炉运行条件,例如工艺废气的循环。空气从除尘料斗漏出和进气成分变化。几何形状的修改具有提高容积利用率并因此增强锅炉表面与气流之间的传热以及粉尘隔离的预期效果。以20 m / s的速率与废锅炉的前端成45度角引入循环废气,进一步增强了冷却效果,同时减少了炉膛进气对锅炉顶板的强烈影响。发现辐射板的放置在增强热传递表面和在锅炉内分配气流方面非常有效。这些结果为改进余热锅炉设计提出了建议。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号