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Analysis of energy transfer in industrial gas-fired radiant tube furnaces.

机译:分析工业燃气辐射管式炉的能量传递。

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摘要

A thermal system mathematical model has been developed to predict heat transfer from the products of combustion in the radiant tubes to the ultimate load in the furnace. The three-dimensional thermal model for the furnace involved the integration of various submodels for the radiant tube and the furnace enclosure.;For the radiant tube, mathematical models were developed to describe turbulent interdiffusion of fuel and air, combustion, flame radiation and NO;The temperature distribution in the refractory walls and the load were obtained by calculating the incident heat fluxes from the radiant tubes via the radiosity method. The thermal models for batch and continuous furnaces were verified using experimental data obtained from industrial furnaces. Heat transfer enhancement methods were identified by performing parametric calculations using the furnace thermal models.;The thermal system model revealed that radiation is the dominant mode of heat transfer from the radiant tubes to the load in the furnace. The parametric studies revealed that increasing load emissivities increased net heat transfer to the load and thereby the overall furnace efficiency. Highly reflective refractories helped reduce the temperature of the refractories with no adverse effect on the furnace efficiency. Although increasing the fuel firing rate in the radiant tubes increased the net heat transfer rate to the load, the furnace efficiency decreased due to increased loss of energy at the radiant tube exhaust. The analysis using different stock materials in the furnace indicated that different optimum firing strategies exist for different stock materials.
机译:已经开发了一个热系统数学模型来预测从辐射管中燃烧产物到炉子极限载荷的热传递。炉子的三维热模型涉及辐射管和炉壳的各种子模型的集成。对于辐射管,建立了数学模型来描述燃料和空气,燃烧,火焰辐射和NO的湍流相互扩散;耐火壁中的温度分布和负荷是通过辐射度法计算出来自辐射管的入射热通量而获得的。使用从工业炉获得的实验数据验证了分批和连续炉的热模型。通过使用炉子热模型进行参数计算来确定传热增强方法。热系统模型表明,辐射是从辐射管到炉子负载的主要传热模式。参数研究表明,增加负载发射率会增加向负载的净热传递,从而提高炉子的整体效率。高反射率的耐火材料有助于降低耐火​​材料的温度,而对炉子效率没有不利影响。尽管增加辐射管中的燃料燃烧率会增加到负载的净热传递率,但由于辐射管排气处的能量损失增加,导致炉效率下降。在熔炉中使用不同原料的分析表明,针对不同原料存在不同的最佳烧成策略。

著录项

  • 作者

    Hariharan, Ramamurthy.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1993
  • 页码 319 p.
  • 总页数 319
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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