Fault Diagnosis of Radiant Tube Burner for Heat Treatment Furnace and Discussion on Combustion Optimization 辐射管式热处理炉烧嘴故障原因分析及燃烧优化途径探讨
An Experimental Research on the Radiant Tube for Annealing Furnace in Zincked-plated Plank Production Line 镀锌板生产线退火炉辐射管燃烧实验研究
The heat transfer calculation of the radiant section in circular type tube furnace was studied Using the Monte-Carlo method for the radiation heat transfer and the efflux mathematical model for the calculation of the convection heat transfer, the calculated results were basically agreement with these obtained from experiments. 研究了圆筒型管式加热炉辐射室的传热计算。辐射采用Monte-Carlo法,对流采用射流模型,计算结果与实验结果基本符合。
By means of perfect combustion of fuel in chamber, the strengthened combustion technology improved the heat transfer of radiant chamber, increased the mean hot strength of furnace tube, increased the total heat load of furnace, so the requirement of expanding capacity of furnace was realized. 强化燃烧技术通过燃料在燃烧室内的完全燃烧,改善了辐射室内的传热,提高了加热炉炉管的平均热强度,提高了加热炉总热负荷,从而实现了加热炉的扩能要求;
The application of "retard the coking rate of radiant furnace tube, prolong the on-stream period of coking furnace" thchnology on delayed coking unit is mentioned. 叙述了减缓辐射炉管结焦速率,延长焦化炉开工周期技术在延迟焦化装置上的应用情况。
Application of Regeneration type Radiant Tube Burner in Vacuum Furnace 蓄热式辐射管烧嘴在真空炉上的应用
Influence of radiant tube soot on heat efficiency for tubular furnace 管式炉辐射管积灰对热效率的影响
Thermotechnical Characteristics Analysis for Radiant Tube Furnace 辐射管搪烧炉热工性能分析
Panzhihua Iron& steel galvanizing line radiant tube furnace heating control 攀钢2~线立式炉加热控制
Calculation Methods for Radiation Heat Transfer in Radiant Tube Furnace 辐射管炉炉膛辐射换热计算方法
Thanks to the development of new sealing technology, the regeneration type radiant tube nozzle can be used in the vacuum furnace to achieve uniform heating result. 新型密封技术的开发,使蓄热式辐射管烧嘴得以应用在真空炉上,并获得了均匀的加热效果。
Two methods for radiation heat trnasfer in radiant tube furnace, the equivalent grey planes method and the imaginary planes method are introduced and compared with real conditions. 当量连续灰平面法和假想面法,并与实际情况进行了比较计算。
Research works are shown that regenerative ( HTAC) fired-gas radiant tube combustor is a high efficiency and saving energy and low pollution as well as good flexibility heater device used for industrial heating furnace. 研究指出,蓄热式燃气辐射管燃烧器是一种高效、节能、低污染的工业炉用加热装置。
The integral equations for calculating the angle factors between radiant tubes and between radiant tube and furnace wall are introduced and the numerical calculations are made. The effects of some parameters on these factors are also discussed. 导出了室式辐射管炉内辐射管与辐射管、辐射管与炉墙之间角系数的积分方程,并利用数值积分方法进行了计算,讨论了不同几何参数下上述角系数的变化。