Please wait a minute...
水泥技术, 2020, 1(3): 48-51    doi: 10.19698/j.cnki.1001-6171.20203048
  工程技术 本期目录 | 过刊浏览 | 高级检索 |
水泥烧成系统煤粉计量与输送设计方案比选
1 杭州山亚南方水泥有限公司; 2 天津水泥工业设计研究院有限公司
Comparison and Selection of Design Schemes for Pulverized Coal Measurement and Transportation in Clinker Burning System
1. Hangzhou Shanya South Cement Co., Ltd. ; 2. Tianjin Cement Industry Design & Research Institute Co., Ltd.
下载:  PDF (2686KB) 
输出:  BibTeX | EndNote (RIS)      
摘要 为实现低能耗、低造价设计指标,对煤粉仓分别布置在窑头和窑尾的方案与传统煤粉仓的布置方案,从工艺、结构、建筑、电气等方面进行了详细研究,从能耗和工程量指标等方面进行了分析比较。将煤粉仓分别布置在窑头和窑尾的用煤点附近的方案,与传统煤粉仓布置在煤磨车间的方案相比,减少了长距离煤粉输送产生的脉冲现象,同时减少了冷空气对烧成系统热耗的影响。
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
刘方权
周伟
丁云才
刘保良
金志民
关键词:  煤粉仓  节能降耗  工程量  方案对比    
Abstract: In order to achieve the design target of low energy consumption and low cost, the schemes of the pulverized coal bins at the preheater and the cooler along with the layout of the traditional pulverized coal bins are studied in detaisl from the aspects of process, structure, architecture and electrical. The index of energy consumption and quantity are also compared. Compared with the traditional pulverized coal bins in the coal mill workshop, the scheme arranged near the coal point in preheater and cooler separately can reduce the pulse phenomenon generated by the long-distance pulverized coal transportation, and the impact on the heat consumption of the burning system by cold air is also reduced.
Key words:  pulverized coal bin    energy saving and consumption reduction    engineering quantity    scheme comparison
收稿日期:  2020-02-18                出版日期:  2020-05-25      发布日期:  2020-05-26      整期出版日期:  2020-05-25
ZTFLH:  TQ172.625.4  
引用本文:    
刘方权, 周伟, 丁云才, 刘保良, 金志民.
水泥烧成系统煤粉计量与输送设计方案比选
[J]. 水泥技术, 2020, 1(3): 48-51.
LIU Fangquan, ZHOU Wei, DING Yuncai, LIU Baoliang, JIN Zhimin. Comparison and Selection of Design Schemes for Pulverized Coal Measurement and Transportation in Clinker Burning System. Cement Technology, 2020, 1(3): 48-51.
链接本文:  
http://www.cemteck.com/CN/10.19698/j.cnki.1001-6171.20203048  或          http://www.cemteck.com/CN/Y2020/V1/I3/48
[1] 王继升, 独传新, 刘清元, 武浩. 窑系统节能降耗技术改造[J]. 水泥技术, 2020, 1(4): 74-77.
[2] 贺旭帅, 卫少浩, 张雷, 雷凯. 煤磨热风管道改造的效果[J]. 水泥技术, 2020, 1(1): 99-101.
[3] 王海涛, 贾津秋. 余热发电热力系统不平衡原因及管理与维护[J]. 水泥技术, 2019, 1(4): 66-68.
[4] 蔡晓亮, 刘传胜, 丁再珍, 赵剑波, 陈心自, 高云详, 王倩.
TRMS60.3矿渣辊磨的技术特点及应用
[J]. 水泥技术, 2019, 1(3): 40-44.
[5] 赵小雷. 高效节能循环风机在ATOX生料磨系统中的应用[J]. 水泥技术, 2019, 1(2): 44-47.
[6] 张煜, 丛培泽, 李金海, 张龙.
吉尔吉斯斯坦某项目电气设计优化方案简介
[J]. 水泥技术, 2019, 1(2): 27-29.
[7] 马娇媚, 陶从喜, 狄东仁.
新型干法水泥窑系统㶲平衡研究
[J]. 水泥技术, 2018, 1(5): 21-25.
[8] 狄东仁, 陶从喜, 柴星腾. 水泥能耗标准的修订与节能降耗技术(上)[J]. 水泥技术, 2018, 1(1): 22-26.
[9] 张煜, 李金海. 电气工程量软件的研究与开发[J]. 水泥技术, 2017, 1(6): 50-53.
[10] 蔡晓亮, 赵剑波, 宋留庆, 王倩, 崔军利. TRMS56.3矿渣辊磨的特点及现场使用[J]. 水泥技术, 2017, 1(5): 49-52.
[11] 刘贵新, 陈昌华, 陶从喜, 彭学平, 李亮.
带SLC分解炉的4 000t/d熟料生产线烧成系统技术优化
[J]. 水泥技术, 2016, 1(5): 87-90.
[12] 王靖, 艾军, 魏灿, 朱金波. 水泥智能优化控制系统的应用研究[J]. 水泥技术, 2016, 1(2): 31-34.
[13] 韩立杨.
浅析水泥易烧性的研究对水泥生产节能降耗的意义
[J]. 水泥技术, 2015, 1(3): 28-32.
[14] 李苑.
海外水泥厂总承包(EPC或EP)项目土建投标报价的注意事项
[J]. 水泥技术, 2014, 1(6): 82-84.
[15] 刘瑞芝, 陈新智, 李霞.
燃煤催化剂对混煤催化燃烧的研究与应用
[J]. 水泥技术, 2013, 1(4): 27-30.
[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