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A Numerical Investigation of the Temperature Uniformity of a Billet due to Thermal Radiation in a Reheating Furnace

机译:加热炉中热辐射引起的钢坯温度均匀性的数值研究

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In Thailand, the iron and steel industry is one of the major industries to provide raw materials to other ones. In order to heat a billet to a proper temperature, it is fed into a reheating furnace, which generates heat by the combustion of fuel from direct-fired burners. After the temperature uniformity of the billet is achieved, it will be sent to the rolling process. The major mechanism of heat transfer in the reheating furnace is the thermal radiation because of the high combustion gas temperature. The temperature distribution of a billet subjected to the thermal radiation of the enclosure surfaces in a reheating furnace is presented in this study. The 2-D steady-state heat conduction equation is numerically solved by the finite volume method together with the Gauss-seidel iterative technique. A qualitative agreement between the numerical result and the data from filed measurement is presented. The variations of the temperature uniformity of the billet with different insulation thicknesses, flame temperatures and furnace floor temperatures are investigated. The result indicates the hot spot at the middle of billet originated from the position of combustion flame. When the wall insulation thickness is decreased, the thermal radiation of combustion flame is decreased, leading to the higher degree of the temperature uniformity of the billet. In case of the lower flame temperature or the higher the floor temperature, the degree of the temperature uniformity of the billet also increases. (37 views)
机译:在泰国,钢铁工业是向其他工业提供原材料的主要工业之一。为了将钢坯加热到适当的温度,将其送入再热炉,再加热炉通过直接燃烧的燃烧器燃烧燃料产生热量。在达到坯料的温度均匀性之后,它将被送至轧制过程。由于加热气体温度高,在再热炉中传热的主要机理是热辐射。在此研究中,介绍了在加热炉中受到外壳表面热辐射的坯料的温度分布。利用有限体积法和高斯-赛德尔迭代技术对二维稳态导热方程进行数值求解。提出了数值结果与现场测量数据之间的定性一致性。研究了不同绝缘厚度,火焰温度和炉底温度的钢坯温度均匀性的变化。结果表明,坯料中部的热点源自燃烧火焰的位置。当壁绝缘厚度减小时,燃烧火焰的热辐射减小,从而导致坯料的温度均匀性更高。在较低的火焰温度或较高的地板温度的情况下,坯料的温度均匀度也增加。 (37观看次数)

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