Study of Geometric Modification of Calciner in Cement Plant

P. Darmanto, Muhammad Isroffi Pramudito
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Abstract

Suspension preheater is a raw mix pre-heating equipment used in a cement plant. The heat is used to raise raw mix temperature up to 800 0C -900 0C. The process results in an 80-90% degree of calcination. In this project, an increasing percentage of calcination in suspension preheater and reducing the load in the kiln is attempted, by including the calciner in suspension preheater. This project will focus on a suspension preheater system with a separate line calciner (SLC) at Cement Plant with 5000 ton per day (TPD) capacity. Calciner in existing conditions will be modified by extending its length by 2.5 m. Computational fluid dynamics (CFD) method was chosen to simulate the performance of the calciner. The results show that the alternative design can increases calcination percentage up to 76,32%, from the original value of 71%. The heat transfer on the alternative design also increases by 9%. As a result, the temperature output of the cyclone 5 also decreases, reducing the heat consumption. Another consequence of the alternative design is the possibility to increase the production capacity while maintaining the outlet temperature of cyclone 5, by increasing raw mix feeding without additional fuel consumption. Thus, clinker production can be increased by 8%.
水泥厂煅烧炉的几何改造研究
悬浮预热器是一种用于水泥厂的原料混合料预热设备。热量被用来提高原料混合温度高达800 -900摄氏度。这个过程的结果是80-90%的煅烧度。本项目通过将煅烧炉安装在悬浮预热器中,试图提高悬浮预热器的煅烧率,降低窑内负荷。该项目将重点关注水泥厂的悬浮预热系统,该系统具有每天5000吨(TPD)的能力。在现有条件下,将对煅烧炉进行改造,将其长度延长2.5米。采用计算流体力学(CFD)方法对煅烧炉的性能进行了模拟。结果表明,经优化设计后,煅烧率由原来的71%提高到76.32%。在替代设计上的传热也增加了9%。因此,旋风5的温度输出也减少了,减少了热量消耗。替代设计的另一个结果是,通过增加原料混合进给量而不增加燃料消耗,可以在保持旋风5出口温度的同时增加生产能力。因此,熟料产量可提高8%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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