Please wait a minute...
水泥技术, 2020, 1(3): 17-20    doi: 10.19698/j.cnki.1001-6171.20203017
  装备技术 本期目录 | 过刊浏览 | 高级检索 |
2 500t/d水泥熟料生产线预热器系统技术改造
1 天津水泥工业设计研究院有限公司; 2 浙江长兴南方水泥有限公司
Technical Transformation of Preheater System of 2 500t/d Cement Clinker Production Line
1. Tianjin Cement Industrial Design & Research Institute Co., Ltd. ; 2. Zhejiang Changxing South Cement Co., Ltd.
下载:  PDF (3407KB) 
输出:  BibTeX | EndNote (RIS)      
摘要 浙江长兴某水泥生产线预热器系统熟料产量为3 000~3 100t/d,实物煤耗为146kg/t熟料左右,系统阻力偏大。为达到节能降耗的目的,对旋风筒、撒料装置、分解炉、窑尾烟室缩口等进行了改造。改造后,熟料产量提高150~250t/d,实物煤耗下降3kg/t熟料,预热器系统压损下降1 600Pa,C1出口负压在4 200Pa左右,其压损在国内同规模生产线中处于先进水平。
服务
把本文推荐给朋友
加入引用管理器
E-mail Alert
RSS
作者相关文章
陈廷伟
彭学平
臧建波
刘万平
董蕊
关键词:  预热器装置  喷煤管  压损  技改    
Abstract: The clinker output of the preheater system of a cement production line in Changxing, Zhejiang Province was 3 000 ~ 3 100t/d, the raw coal consumption was about 146kg/t.cl, and the system resistance is relatively large. In order to achieve the purpose of saving energy and reducing consumption, the cyclones, the splash boxes, the calciner, the connect section between the calciner and the kiln inlet chamber , etc  were reformed. After the transformation, the clinker output increased by 150 ~ 250t/d, the raw coal consumption decreased by 3kg/t.cl, the pressure loss of preheater system decreased by 1 600 Pa, the negative pressure of C1 outlet was about 4 200 Pa, and its pressure loss was at the advanced level in the same scale production lines in China.
Key words:  preheater    burner    pressure loss    technical transformation
收稿日期:  2019-08-27                出版日期:  2020-05-25      发布日期:  2020-05-26      整期出版日期:  2020-05-25
ZTFLH:  TQ172.622.29  
引用本文:    
陈廷伟, 彭学平, 臧建波, 刘万平, 董蕊. 2 500t/d水泥熟料生产线预热器系统技术改造[J]. 水泥技术, 2020, 1(3): 17-20.
CHEN Tingwei, PENG Xueping, ZANG Jianbo, LIU Wanping, DONG Rui. Technical Transformation of Preheater System of 2 500t/d Cement Clinker Production Line. Cement Technology, 2020, 1(3): 17-20.
链接本文:  
http://www.cemteck.com/CN/10.19698/j.cnki.1001-6171.20203017  或          http://www.cemteck.com/CN/Y2020/V1/I3/17
[1] 张结元. 散料输送系统的改造[J]. 水泥技术, 2020, 1(2): 96-99.
[2] 高永健, 李元喜, 王魁.
高效节能风机在熟料生产线上的应用
[J]. 水泥技术, 2020, 1(1): 28-31.
[3] 刘冀强, 贡利坤, 于辰平, 侯晓昆.
ZGM113G中速辊磨入风口的改造
[J]. 水泥技术, 2018, 1(2): 98-99.
[4] 余慧英. 窑尾技术改造结构加固设计简介[J]. 水泥技术, 2017, 1(5): 77-80.
[1] . Review and Prospect of Engineering Practice of Waste Disposal in Cement Kiln in China[J]. Cement Technology, 2018, 1(1): 17 -21 .
[2] DI Dongren, TAO Congxi, CHAI Xingteng. Revision of Cement Energy Consumption Standards and Energy Saving Technology(Ⅰ)[J]. Cement Technology, 2018, 1(1): 22 -26 .
[3] LIU Yonggang, GAO Hongwei, XIAO Guiqing. Design Method of Road Structure Using Lean Concrete Base[J]. Cement Technology, 2018, 1(1): 27 -31 .
[4] LIU Xu, LI Liang. Investigation of New Medium Temperature Wear-resistant Alloy Steel[J]. Cement Technology, 2018, 1(1): 32 -34 .
[5] MA Debao. Finite Element Analysis of Inverted Cone in Raw Meal Silo[J]. Cement Technology, 2018, 1(1): 35 -38 .
[6] HAN Zhongqi. [J]. Cement Technology, 2018, 1(1): 38 -48 .
[7] XIE Jianzhong, LIAN Xuewen. Analysis and Solution of Segregation of the Kiln Ash in Continuous Raw Meal Homogenization Silo#br#[J]. Cement Technology, 2018, 1(1): 49 -53 .
[8] GUAN Laiqing, HE Yongxian. [J]. Cement Technology, 2018, 1(1): 54 -59 .
[9] WEI Can, ZHANG Yuanyuan, AI Jun. Application of Cement Intelligent Control System in Overseas Projects[J]. Cement Technology, 2018, 1(1): 60 -64 .
[10] JIN Shuang. [J]. Cement Technology, 2018, 1(1): 72 -73 .
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
    PDF Preview