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1000t/d级特大吨位浮法玻璃熔窑设计 被引量:2

Design of 1000 t/d Super Capacity Float Glass Furnace
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摘要 介绍了千吨级特大吨位浮法玻璃熔窑的四大经济技术指标的设计思路,对千吨级玻璃熔窑主窑体、小炉、蓄热室等各部位窑体结构,以及熔化区炉膛火焰空间容积热负荷与玻璃液面受热强度进行了计算,并根据设计出的格子体参数,对助燃空气能够达到的预热温度和格子体热平衡进行了计算。 The design mentality of four major economic indicators for kiloton super large capacity glass furnace was described. The calculation of main furnace, port, regenerator, heat load of flame chamber in melting space, heating intensity on glass melt were carried out. The computation of preheating temperature with combustion air and thermal balance of checker were also conducted.
作者 唐福恒
出处 《玻璃》 2015年第6期18-32,共15页 Glass
关键词 浮法 玻璃 熔窑 设计 float process glass furnace design
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参考文献4

  • 1国家建材局秦皇岛玻璃工业设计院,主编.浮法玻璃文摘汇编(第一、二、三集)[M].全国建材工业玻璃专业情报网.1982.
  • 2Y.Boussant-Roux,O.Citti,M.Miller,S.Chaudourne,陈恭源.减轻蓄热室堵塞的新型熔铸格子砖设计方案及其试验[J].玻璃,2004,31(3):44-53. 被引量:1
  • 3沃尔夫冈·特里尔,编.玻璃熔窑构造与运行特性[M].上海:全国玻璃搪瓷工业科技情报,1989.
  • 4美国2020年前玻璃工业技术发展指南[N].中国建材报,2004.4.23.

二级参考文献8

  • 1Morse, C. E.; Manring, W. H. A Practical Solution to Minimize Carryover Plugging of Regenerative Glass Furnaces. Ceramic Bulletin. Vol.50. No. 5 (1971)
  • 2Ackroyd, D. K. The Cleaning of Glass Tank Regenerators by Burnout Techniques. Glass Technology. Vol. 27. No. 1 (1986)
  • 3Derbyshire. P. ; Drewery, P. S. Thermal Cleaning of Regenerators. Glass October issue (1994)
  • 4Beerkens, R. G. C. ; de Waal, H. Experimental and Thermodynamic characterisation of deposition and condensation products from exhaust gases of glass furnaces. Glass Technology, Vol. 28,No. 6 (1987)
  • 5Zanoli, A.; Begley, E. R.; Vidil, R.; Lagarenne, D. Thermal Performance of Cruciform Regenerator Packing. Glass March issue (1990)
  • 6Boussant-Roux, Y.; Leahy Jr, W. D. Latest Developments in the Measurement of Regenerator Thermal Performance. Glass Problems, November 1994
  • 7Beerkens, R. G. C. ; de Waal, H. Simulation of the Condensation and Deposition Proceses in Regenerators of Glass Furnaces. Glastech. Ber. 61.No. 2 (1988)
  • 8Metais, B.; Eckert, E. Forced, mixed and free convection regimes. Trans. American Soc. Mec.Eng. Journal. Vol. 86. n02, P. 295 ~ 296(1964)

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