燃煤锅炉掺氨燃烧实验与模拟研究进展OA
Progress in Experimental and Numerical Simulation Research of Co-Firing Ammonia in Coal-Fired Boiler
基于燃煤锅炉掺氨燃烧以实现碳减排的发展需求,从实验和数值模拟研究两个方面,综述了煤氨掺烧研究进展.实验研究方面,依次介绍关注着火和火焰传播的基础实验,面向高效且低NOx排放燃烧技术开发的kW级实验和MW级中试,以及实炉工业验证试验.数值模拟研究方面,依次介绍氨燃烧反应机理模型、基于现有计算流体力学(CFD)平台的煤氨掺烧数值模拟方法,以及不依赖现有CFD平台的新方法,并着重汇总分析面向实炉的数值模拟研究.当前研究结果充分证实了煤氨掺烧在技术上的可行性,但数值模拟方法仍需进一步发展完善.
According to the demand of co-firing ammonia in coal-fired boiler for carbon emission reduction,progress in experimental and numerical simulation research of coal-ammonia co-firing is reviewed.For experimental research,fundamental experiments of ignition and flame propagation,kW and MW scale tests for developing efficient and low-NO,combustion technology,and industrial tests in practical boilers are introduced in turn.For numerical simulation research,kinetic models for ammonia combustion and numerical simulation methods for coal-ammonia co-firing based on/independent of the present CFD software are subsequently introduced,and studies for industrial boiler are also simmarized and and analyzed.Based on the present research progress,coal-ammonia co-firing is confirmed to be technically realizable,whereas improvement in numerical simulation methods is still in need.
吴乃新;张翔;陈钧;周昊;范卫东
浙江大学能源工程学院,浙江 杭州 310027||上海锅炉厂有限公司,上海 200245上海锅炉厂有限公司,上海 200245上海交通大学机械与动力工程学院,上海 200240浙江大学能源工程学院,浙江 杭州 310027上海交通大学机械与动力工程学院,上海 200240
能源科技
碳减排燃煤锅炉煤氨掺烧实验研究数值模拟
carbon emission reductioncoal-fired boilercoal-ammonia co-firingexperimental researchnumerical simulation
《锅炉技术》 2026 (1)
1-11,11
国家重点研发计划项目(2023YFB4005700)
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