首页 | 本学科首页   官方微博 | 高级检索  
     

水煤浆气化喷嘴温度场和热应力分布的数值模拟及分析
引用本文:屠伟龙,匡建平,刘建忠,周俊虎,何新土. 水煤浆气化喷嘴温度场和热应力分布的数值模拟及分析[J]. 动力工程, 2008, 28(5)
作者姓名:屠伟龙  匡建平  刘建忠  周俊虎  何新土
作者单位:1. 中国石化股份有限公司镇海炼化分公司,宁波,315207
2. 中国船舶重工集团公司第七一一研究所,上海,20011
3. 浙江大学,能源清洁利用国家重点实验室,杭州,310027
摘    要:采用数值模拟的方法,对水煤浆气化炉内热态温度场及喷嘴头部温度分布进行了分析,结果表明:增加冷却水流量和加大冷却水旋流强度可以有效降低喷嘴头部温度.同时,利用有限元分析法对喷嘴头部进行了热应力耦合计算,分析了其热应力变化特性,结果表明:喷嘴圆角处热应力比较集中,采用冷却水旋流流动后,该处温度降低,热应力集中的现象得到缓解,可提高喷嘴的使用寿命.

关 键 词:工程热物理  水煤浆  温度分布  数值模拟  气化喷嘴

Numerical Simulation and AnalysiS of Temperature Field and Stress Field for Nozzle in Coal-Water Slurry Gasifier
TU Wei-long,KUANG Jian-ping,LIU Jian-zhong,ZHOU Jun-hu,HE Xin-tu. Numerical Simulation and AnalysiS of Temperature Field and Stress Field for Nozzle in Coal-Water Slurry Gasifier[J]. Power Engineering, 2008, 28(5)
Authors:TU Wei-long  KUANG Jian-ping  LIU Jian-zhong  ZHOU Jun-hu  HE Xin-tu
Abstract:An analysis was made on the hot-state temperature field in a coal-water slurry gasifier and the temperature distribution around its nozzle head by using numerical simulation method.The results show that increasing cooling water flow rate and enhancing cooling water turbulence can effectively reduce the temperature around nozzle head.Moreover,coupled calculation of thermal stress around the nozzle head was performed using finite element analysis,while the stress variation characteristics was analyzed.The results show that thermal stress easily gets concentrated at round corner areas of nozzle head,which may be reduced by lowering the surrounding temperature with cooling water turbulence,and thus the working life of nozzles can be prolonged.
Keywords:engineering thermophysics  coal-water slurry  temperature distribution  numerical simulation  gasification nozzle
本文献已被 CNKI 维普 万方数据 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号