标题: 热风炉之燃烧、流场与热传数值模拟分析
The Numerical Simulation Analyses of Combustion, Flow Field and Heat Transfer for Hot-Blast Stove
作者: 杨宏一
Hung-Yi Yang
陈俊勋
Chiun-Hsun Chen
机械工程学系
关键字: 热风炉;燃烧过程;送风过程;蓄热砖;hot-blast stove;on-gas cycle;on-blast cycle;checker brick
公开日期: 2007
摘要: 本研究系以商业套装模拟软体FLUENT来模拟热风炉操作之一系列运作过程,其中包括燃烧、切换和送风三个过程。燃烧部分使用finite-rate之燃烧模组,蓄热砖部分使用多孔性介质来做近似。数值模拟所得之计算结果着重于废气出口与热风出口温度值。在参考案例中,废气出口与热风出口温度随时间变化之趋势在模拟与实验中皆相同,且废气出口与热风出口温度之模拟与实验值的均方根误差(RMSE)分别为2.0 %及1.2 %。
针对燃气热值、燃气流量以及过剩空气比等参数对于热风炉操作的影响做一系列之研究,结果显示可选择如下方案以节省操作成本,并可稳定进行热风炉之运作: (1) 减少混合燃气中COG之使用量30 %,过剩空气比维持1.03 (2) 减少混合燃气总流量5 %,过剩空气比维持1.03。
This study applies a commercial package software FLUENT to simulate a series of hot-blast stove’s operation processes. The operation process consists of on-gas, stove-change and on-blast cycles. The finite-rate combustion model and porous media approximation are adopted here. The simulation results focus on the waste gas and hot blast temperatures. In the reference case, the trends of experimental and simulated temperatures of waste gas and hot blast varying with time are the same, and the RMSE of waste gas and hot blast temperature between simulation and experiment are 2.0 and 1.2 % respectively.
From a series of parametric studies consisting of the heating value and volume flow rate of mixed fuel gas and the excess air ratio, the results indicated that it can use the following cases to reduce the cost of hot-blast stove’s operation: (1) The quantity of COG in mixed fuel gas decreases 30 %, and the excess air ratio maintains 1.03. (2) The volume flow rate of mixed fuel gas decreases 5 %, and the excess air ratio maintains 1.03.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT009514547
http://hdl.handle.net/11536/38536
显示于类别:Thesis


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