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Zonal method solution of radiative heat transfer in a one-dimensional long roller-hearth furnace in CSP 被引量:4

Zonal method solution of radiative heat transfer in a one-dimensional long roller-hearth furnace in CSP
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摘要 A radiative heat transfer mathematical model for a one-dimensional long furnace was set up in a through-type roller-hearth furnace (TTRHF) in compact strip production (CSP). To accurately predict the heat exchange in the furnace, modeling of the complex gas energy-balance equation in volume zones was considered, and the heat transfer model of heating slabs and wall lines was coupled with the radiative heat transfer model to identify the surface zonal temperature. With numerical simulation, the temperature fields of gas, slabs, and wall lines in the furnace under one typical working condition were carefully accounted and analyzed. The fundamental theory for analyzing the thermal process in TI'RI-IF was provided. A radiative heat transfer mathematical model for a one-dimensional long furnace was set up in a through-type roller-hearth furnace (TTRHF) in compact strip production (CSP). To accurately predict the heat exchange in the furnace, modeling of the complex gas energy-balance equation in volume zones was considered, and the heat transfer model of heating slabs and wall lines was coupled with the radiative heat transfer model to identify the surface zonal temperature. With numerical simulation, the temperature fields of gas, slabs, and wall lines in the furnace under one typical working condition were carefully accounted and analyzed. The fundamental theory for analyzing the thermal process in TI'RI-IF was provided.
出处 《Journal of University of Science and Technology Beijing》 CSCD 2007年第4期307-311,共5页 北京科技大学学报(英文版)
关键词 zonal method roller-hearth furnace radiative heat transfer mathematical model temperature fields zonal method roller-hearth furnace radiative heat transfer mathematical model temperature fields
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  • 1肖洪庆,袁文武.浅谈燃煤粒度对锅炉热效率的影响[J].化工进展,2009,28(S1):407-410. 被引量:5
  • 2成珂,张鹤飞.蒙特卡洛法模拟集热器入射面太阳辐射的算法研究[J].太阳能学报,2006,27(8):743-747. 被引量:6
  • 3陈振东,孙斌.工业锅炉的热效率分析[J].太原科技,2007(5):65-66. 被引量:9
  • 4陈海耿 宁宝林.段法能量平衡方程组的主变量修正解法.东北工学院学报,1986,47(2):1-1.
  • 5Jaklia A, Vode F, Toma Z, et al. Online simulation model of the slab-reheating process in a pusher-type fumace [ J ]. Applied Thermal Engineering, 2007,27 : 1105 - 1114.
  • 6Hottel H C, Cohen E S. Radiant heat transfer in a gas filled enclosure: allowance for non-uniformity of gas temperature [J]. AIChE Int J, 1958,4(1 ) :3 - 14.
  • 7Zhou H C, Han S D, Sheng F, et al. Visualization of three-dimensional temperature distributions in a large-scale furnace via regularized reconstruction from radiative energy images: numerical studies[J ]. Journal of Quantitative Spectroscopy & Radiative Transfer, 2002,72:361 - 383.
  • 8Kim S H, Huh K Y. A new angular discretization scheme of the finite volume method for 3-D radiative heat transfer in absorbing, emitting and anistropically scattering media [ J ]. Heat and Mass Transfer, 2000,43:1233.
  • 9Capenter D. Temperature control and optimization of a reheating furnace using a distributed control system[J]. Iron and Steel Engineer, 1987,64(8):44 - 49.
  • 10Price C. Temperature control for slab reheating fumaces[J ]. Iron and Steel Engineer, 1980,57 (9) : 59 - 69.

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