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作 者:黄中[1,2] 孙献斌[1,2] 江建忠[1,2] 时正海[1,2] 肖平[1,2]
机构地区:[1]中国华能集团清洁能源技术研究院有限公司,北京100098 [2]国家能源煤炭清洁低碳发电技术研发(实验)中心,北京100098
出 处:《中国电力》2013年第9期6-11,共6页Electric Power
基 金:"十二五"国家科技支撑计划项目(2012BAA02B02);中国华能集团公司科学技术项目(HNKJ10-23)
摘 要:对某循环流化床锅炉炉内温度场及氧量场进行了测试研究,利用数值模拟软件对锅炉的燃烧过程进行了模拟。结果显示,炉膛温度沿炉膛高度分布较为均匀,锅炉设计时稀相区的温度可采用一个固定值代替,距离壁面1 m以上距离的温度变化很小且趋于恒定,锅炉设计时可以用炉膛中心温度作为设计温度;氧气浓度分布规律沿炉膛宽度方向呈近似"M"型分布,炉膛中心和壁面氧浓度低。软件模拟结果与测试结果也基本吻合。研究结果可为掌握循环流化床锅炉温度场及氧量场的基本规律、提高锅炉燃烧效率提供帮助,同时也可为大型循环流化床锅炉的设计和理论研究提供参考。The test on furnace temperature fiehl and oxygen fiehl of one CFB boiler is conducted and the comhustiun process of the boiler is simulated hy numerical simulation software. The resuhs demonstrate that the temperature distribution along the furnace height is relatively uniform, therefore, the temperature in the dilute region can t)e represented with a fixed value during boiler design. In addition, Ihe temperature 1 meter away frum the filrnaee wall varies slightly and tends to be constant, so that, the temperature in the furnace center can he used as the reference temperature during boiler design. The oxygen concentration is lower in the center and at the wall surface and shows a M-shape distribution approximately along the furnace width. The numerical simulation resuhs are consistent with the test data. The study is helpful to understand the CFB boiler temperature fieht and oxygen fiehl distrilmtionan〈1 improve the eomtmstion efficienev. The research resuhs can provide a refernee for large CFB boiler design and theoretical studies.
关 键 词:循环流化床锅炉 温度场 氧量场 测试试验 数值模拟
分 类 号:TK31[动力工程及工程热物理—热能工程]
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