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作 者:刘栋 安恩科[1] 张乃峰 袁欢政 李晓雯 LIU Dong;AN Enke;ZHANG Naifeng;YUAN Huanzheng;LI Xiaowen(School of Mechanical and Energy Engineer,Tongji University,Shanghai 201804,China;Service Center of Steam-Injection Technology of SINOPEC Shengli Oil Company,Dongying 257068,Shandong,China)
机构地区:[1]同济大学机械与能源工程学院,上海201804 [2]中国石油化工股份有限公司胜利油田分公司注汽技术服务中心,山东东营257068
出 处:《工业锅炉》2021年第3期1-9,共9页Industrial Boilers
摘 要:对基于分级燃烧技术的8 MW和15 MW燃气低NO_(x)燃烧器开展了数值模拟,分析了35%、70%和100%额定负荷三个运行工况下燃烧器温度场、组分浓度场和NO_(x)排放量等特性。燃烧器在各模拟工况下均表现出较好的燃尽特性和低于30 mg/m 3(3.5%O 2浓度换算)的NO_(x)排放量。针对15 MW燃烧器满负荷工作时炉膛前端近壁面设备烧损问题提出了两种改造方案,模拟结果表明改进后的方案解决了设备烧损问题,同时保证了低浓度的NO_(x)排放。The computational fluid dynamics(CFD)software FLUENT is used to simulate the 8 MW and 15 MW gas-fired low NO_(x)burners based on staged combustion technology.The temperature field,component concentration field and NO_(x)emission characteristics of the two burners under three operating load of 35%,70%and 100%are analyzed.The burner has ideal burnout characteristics and the NO_(x)emission simulated to be less than 30 mg/m 3(conversion of 3.5%O 2 concentration)under all simulated conditions.In order to prevent the equipment at the front end of the furnace near the wall from being burned when the 15 MW burner is working at full load,two modified schemes are put forward.The simulation results show that the modified scheme solves the problem of equipment being damaged and ensures low concentration NO_(x)emission.
分 类 号:TK222[动力工程及工程热物理—动力机械及工程]
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