ENERGY AND FURNACE DESIGN FOR BATCH ANNEALING AND HEAT TREATING FURNACES.

被引:0
|
作者
Ferguson, N.T.
机构
来源
Iron and Steel Engineer | 1979年 / 56卷 / 06期
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Energy consumed by the newer direct fired recuperative system amounts to approximately 0. 85 MM Btu/ton. This compares with approximately 1. 2 MM Btu/ton for many existing radiant tube furnaces. A savings of 30 to 40% can be achieved by converting the radiant tube furnaces to direct fired recuperative systems. In the direct fired recuperative furnaces, 52% of the fuel input goes to direct heating of the steel vs. only 35% for the cold air radiant tube fired furnace. This occurs through improved heat transfer from direct firing and greatly reduced flue gas temperature from recuperation. Examples represent two specific areas of furnace equipment in a steel mill.
引用
收藏
页码:31 / 33
相关论文
共 50 条
  • [21] Electrical, non-insulated annealing furnaces.
    Rohn, W
    ZEITSCHRIFT DES VEREINES DEUTSCHER INGENIEURE, 1924, 68 : 1101 - 1105
  • [22] IMPROVED HEAT SCHEDULES FOR GLASS FURNACES.
    Levitin, L.Ya.
    Protsenko, L.M.
    Pankova, N.A.
    Butnyakov, A.I.
    Tokarev, V.D.
    Glass and Ceramics (English translation of Steklo i Keramika), 1984, 41 (5-6): : 212 - 215
  • [23] Heat Treatment in Fluidized Bed Furnaces.
    Sommer, Peter
    Drahtwelt Wurzburg, 1983, 69 (01): : 16 - 19
  • [24] Energy Exchange in Furnaces. Modeling and Heat Balance Obtained by Spectropyrometry.
    Crabol, Jean
    Lorioux, Thierry
    Revue generale de thermique, 1983, 22 (264): : 853 - 859
  • [25] RAISING THE EFFICIENCY OF FUEL AND ELECTRICITY USE WHEN MODERNIZING HEAT-TREATING FURNACES.
    Mel'nichenko, E.F.
    Soviet Energy Technology (English translation of Energomashinostroenie), 1985, (02): : 82 - 85
  • [26] HEAT TREATMENT IN FLUIDIZED BED FURNACES.
    Sommer, Peter
    Wireworld international, 1983, 25 (03): : 105 - 108
  • [27] Optimal distribution of heat energy in batch electric furnaces
    Kulibanov, V.I.
    Usenko, Yu.I.
    Ivanov, V.I.
    Gorshkov, Yu.F.
    Nazar, P.I.
    Stal', 1993, (05): : 61 - 64
  • [28] OPTIMIZING THE ENERGY INPUT OF INDUSTRIAL FURNACES.
    Beneke, F.
    Kohlgrueber, K.
    Woelk, G.
    Gaswaerme International, 1987, 36 (02): : 68 - 70
  • [29] TECHNOLOGY OF ENERGY SAVINGS FOR INDUSTRIAL FURNACES.
    Tokitsu, Tetsuya
    Energy developments in Japan, 1984, 6 (04): : 321 - 338
  • [30] Optimizing the Energy Input of Industrial Furnaces.
    Kohlgrueber, K.
    Woelk, G.
    Gaswaerme International, 1988, 37 (03): : 149 - 151