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基于数值模拟的实验室氮氧化物生成装置设计
引用本文:邢德山,张炯明.基于数值模拟的实验室氮氧化物生成装置设计[J].电力学报,2008,23(1):26-28.
作者姓名:邢德山  张炯明
作者单位:1. 山西大学工程学院,太原,030013
2. 山西电力职业技术学院,太原,030021
摘    要:基于数值模拟,设计了一种实验室用氮氧化物生成装置。该装置利用乙炔和氧气发生燃烧反应所产生的高温温度场,使随同空气一起进入燃烧室的氮气与氧气发生反应生成NOx。数值模拟表明:设计方案是可行的。调控乙炔喷口气流速度是调节燃烧室出口NOx浓度的主要手段,在乙炔喷口气流速度为3~5 m/s时,燃烧室出口的NOx平均浓度变化范围为2 064~4 297 cm3.m-3;在一定的乙炔喷口气流速度下,调节空气入口速度也可在小范围内调节燃烧室出口NOx浓度。从而可以满足实验过程中对NOx浓度的不同要求。

关 键 词:氮氧化物  乙炔  数值模拟
文章编号:1005-6548(2008)01-0026-03
修稿时间:2007年12月29

Design of a NOx Generator Used in X Laboratory Based on Numerical Simulation
XING De-shan,ZHANG Jiong-ming.Design of a NOx Generator Used in X Laboratory Based on Numerical Simulation[J].Journal of Electric Power,2008,23(1):26-28.
Authors:XING De-shan  ZHANG Jiong-ming
Abstract:Based on numerical simulation,a NOx generator is designed.In the generator,acetylene reacts to oxygen getting in together with air to release a great deal of heat and to induce high temperature field in the combustion chamber,and then the nitrogen in the air reacts to oxygen to produce NOx.Numerical simulation shows that the scheme is feasible.The NOx density of the outlet of the chamber can be adjusted by changing the velocity of the acetylene jet,i.e.,when the latter changes from 3~5m/s,the former changes from 2064~4297ppm.To maintain the velocity of the acetylene jet but to change the velocity of the air jet can also adjust the NOx density in smaller scale.Thus,the generator can meet different requirements in various situations.
Keywords:NOx  acetylene  numerical simulation
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