W火焰锅炉脱硝系统流场CFD优化CFD optimization of flow field in denitrification system of W flame boiler
耿宣,汪洋,王凯亮
GENG Xuan,WANG Yang,WANG Kailiang
摘要(Abstract):
由于W火焰锅炉炉膛设计热负荷与火焰中心温度较高,热力型NO_x生成增加,炉膛出口NO_x质量浓度远高于其他煤粉锅炉,对锅炉后部的选择性催化还原(SCR)脱硝装置要求很高。为探究流场和组分浓度分布对SCR装置脱硝效率和氨逃逸的影响,提升装置脱硝性能,采用计算流体力学(CFD)仿真手段建立某电厂660 MW机组W火焰锅炉脱硝系统的三维计算流体力学模型,并进行数值模拟;为使计算结果更贴近实际工况,按照锅炉满负荷下摸底试验数据设定入口NO_x浓度边界条件。通过详细分析SCR系统烟气速度分布、组分浓度分布、氨逃逸等流动特性,针对流场优化、分区喷氨和新型静态混合器对脱硝性能的影响进行模拟与优化,从而提高SCR系统流场及浓度场均匀性。优化前后模拟结果表明,通过增加顶部导流板数量,可提升催化剂入口速度分布均匀性,消除催化剂入口速度较高的条状区域,优化后催化剂入口烟气速度分布相对标准偏差由20.86%降至3.80%;通过增加三角翼型静态混合器可消除入口NO_x浓度分布不均的影响,提升浓度场均匀性,分区最大氨氮物质的量比相对标准偏差由10.72%降至1.78%;改造方案明显优于原始设计,对工程设计具有重要的借鉴意义。
Because of higher thermal load and flame center temperature of the flame center, the generation of thermal NO_x is increased. The down-fired boiler has higher NO_x mass concentration than other coal boilers, and the selective catalytic reduction(SCR) denitrification device at the rear of the boiler has high requirements. To investigate the influences of flow field and species concentration profile on deNO_x efficiency and ammonia slip in an industrial SCR reactor, a 3 D computational fluid dynamics(CFD) model of SCR device was established based on ANSYS FLUENT software, so as to improve the denitrification performance of device, and numerical simulation was carried out.In order to make the calculation results closer to the actual conditions, the actual NO_x concentration of the boiler under full load was used as the SCR inlet boundary conditions in the numerical simulation. Through detailed analysis of flow characteristics of SCR system such as flue gas velocity distribution, component concentration distribution, ammonia escape, etc.,simulation and optimization were carried out for the influence of flow field optimization, zoned ammonia injection and new static mixer on denitration performance, so as to improve the flow field and concentration field uniformity of SCR system. The simulation results show that by increasing the number of deflectors in the top chimney flue, the uniformity of catalyst inlet velocity distribution is improved, and the strip area with high velocity can be eliminated. After optimization, the relative standard deviation of catalyst inlet velocity distribution is reduced from 20.86% to 3.80%. The influence of uneven NO_x concentration distribution at the inlet can be eliminated by adding a static mixer with triangular airfoil, and SCR uniformity of the concentration field can be improved. The relative standard deviation of the maximum ammonia nitrogen molar ratio is reduced from 10.72% to 1.78%.The reconstruction scheme is obviously superior to the original design, which has important guiding significance for engineering design.
关键词(KeyWords):
W火焰锅炉;选择性催化还原;CFD;静态混合器;氨氮物质的量比
W flame boiler;selective catalytic reduction(SCR);computational fluid dynamics(CFD);static mixer;NH_3/NO_x molar ratio
基金项目(Foundation): 国家重点研发计划资助项目(2017YFB0603205)
作者(Author):
耿宣,汪洋,王凯亮
GENG Xuan,WANG Yang,WANG Kailiang
DOI: 10.13226/j.issn.1006-6772.21080910
参考文献(References):
- [1] 王科,王贲,于洁,等.SOFA参数W锅炉燃烧及NOx排放影响的数值模拟[J].煤炭学报,2018,43(3):839-845.WANG Ke,WANG Ben,YU Jie,et al.Influence of separated overfire-air parameters on combustion and NOx emission characteristics for a Babcock & Wilcox (B&W) down-fired boiler[J].Journal of China Coal Society,2018,43(3):839-845.
- [2] 朱群益,曾令艳,况敏,等.超临界350 MW机组W火焰锅炉多次引射分级燃烧三次风倾角数值优化[J].热力发电,2017,46(1):30-35,41.ZHU Qunyi,ZENG Lingyan,KUANG Min,et al.Numerical optimization of tertiary-air declination angle for a 350 MW W-shape supercritical boiler with multi-injection and staging combustion[J].Thermal Power Generation,2017,46(1):30-35,41.
- [3] 潘栋,王春昌,丹慧杰,等.W火焰锅炉低氮燃烧改造策略分析[J].热力发电,2013(12):137-140.PAN Dong,WANG Chunchang,DAN Huijie,et al.Low NOx combustion transformation strategy for W-flame boilers[J].Thermal Power Generation,2013(12):137-140.
- [4] KUANG Min,LI Zhengqi.Review of gas/particle flow,coal combustion,and NOx emission characteristics within down-fired boilers[J].Energy,2014,69:144-178.
- [5] 陈海杰,马务,刘贡祎,等.W火焰锅炉SNCR脱硝及其对SCR入口流场的影响[J].中国电力,2019,52(7):146-153.CHEN Haijie,MA Wu,LIU Gongyi,et al.Study on SNCR denitration of W-flame boiler and its effect on the flow field of SCR inlet section[J].Electric Power,2019,52(7):146-153.
- [6] 李红智,严万军,赵治平,等.FW型W火焰锅炉低氮燃烧系统改造数值模拟[J].热力发电,2014,43(12):31-37.LI Hongzhi,YAN Wanjun,ZHAO Zhiping,et al.Numerical optimization design for low NOx combustion system of a Foster Wheeler type down fire boiler[J].Thermal Power Generation,2014,43(12):31-37.
- [7] 李晗天,宋蔷,姚强.SCR反应器入口速度与氨分布不均匀性对脱硝性能的影响[J].中国电机工程学报,2017,37(9):2599-2607.LI Hantian,SONG Qiang,YAO Qiang.Influence of non-uniform distributions of inlet velocity and reductant on SCR deNOx performance[J].Proceedings of the CSEE,2017,37(9):2599-2607.
- [8] 安恩科,张瑞,韩益帆,等.多相湍流燃烧数值模拟的网格无关性分析[J].锅炉技术,2018,49(6):54-58.AN Enke,ZHANG Rui,HAN Yifan,et al.Numerical simulation mesh independence of multi-phase turbulent combustion[J].Boiler Technology,2018,49(6):54-58.
- [9] 黄俊,李兴磊,阮斌,等.基于数值模拟的某300 MW燃煤电站SCR脱硝系统流场优化研究[J/OL].洁净煤技术:1-9[2022-10-11].http://kns.cnki.net/kcms/detail/11.3676.TD.20210810.1041.004.html.HUANG Jun,LI Xinglei,RUAN Bin,et al.Research on flow field optimization of SCR-deNOx system in a 300 MW coal-fired power plant based on numerical simulation[J/OL].Clean Coal Technology:1-9[2022-10-11].http://kns.cnki.net/kcms/detail/11.3676.TD.20210810.1041.004.html.
- [10] 蔡小峰.基于数值模拟的SCR法烟气脱硝技术优化设计[D].北京:华北电力大学,2006.
- [11] 王海川,曾祥浩,廖艳芬,等.SCR系统流场优化数值模拟研究[J].洁净煤技术,2020,26(4):147-153.WANG Haichuan,ZENG Xianghao,LIAO Yanfen,et al.Study on the numerical simulation of flow field optimization in SCR system[J].Clean Coal Technology,2020,26(4):147-153.
- [12] 周英贵.大型电站锅炉SNCR/SCR脱硝工艺试验研究、数值模拟及工程验证[D].南京:东南大学,2016.
- [13] 赵大周,刘沛奇,何胜,等.燃煤电站SCR烟气脱硝CFD技术的研究进展[J].中国电力,2016,49(8):157-161.ZHAO Dazhou,LIU Peiqi,HE Sheng,et al.Research progress of CFD-based SCR flue gas de-NOx technology for coal-fired power plants[J].Electric Power,2016,49(8):157-161.
- [14] 董建勋,李辰飞,王松龄,等.还原剂分布不均对SCR脱硝性能影响的模拟分析[J].电站系统工程,2007,23(1):20-24.DONG Jianxun,LI Chenfei,WANG Songling,et al.Simulation of effect of non-uniformity of reagent distribution on SCR deNOx performance[J].Power System Engineering,2007,23(1):20-24.
- [15] 吴学智,聂会建,鞠付斌,等.SCR脱硝系统不均匀喷氨方案的数值模拟研究[J].电力科技与环保,2014,30(5):26-29.WU Xuezhi,NIE Huijian,JU Fubin,et al.CFD simulation study of non-uniform ammonia injection in SCR denitrification system[J].Electric Power Technology and Environment Protection,2014,30(5):26-29.
- [16] 裴煜坤,吴卫红,苏秋凤,等.V型喷氨混合装置结构优化研究[J].能源与环境,2013(4):49-53.PEI Yukun,WU Weihong,SU Qiufeng,et al.Study on optimizing the structure of ammonia injection and V-shaped mixing devices[J].Energy and Environment,2013(4):49-53.
- [17] 洪文鹏,兰江.SCR系统静态混合器数值模拟[J].锅炉技术,2014,45(3):68-72.HONG Wenpeng,LAN Jiang.Numerical simulation of static mixer in SCR denitrification system[J].Boiler Technology,2014,45(3):68-72.
- [18] 隋莉莉,袁景淇.火电SCR脱硝系统混合与均流CFD仿真[J].控制工程,2008,15(5):523-525.SUI Lili,YUAN Jingqi.CFD simulation for mixing and flow uniforming in SCR-deNOx system of coal-fired power plant [J].Control Engineering of China,2008,15(5):523-525.
- [19] 李源,毛睿,任利明,等.非均匀来流条件下SCR系统静态混合器布置及喷氨优化数值模拟研究[J].热能动力工程,2021,36(6):78-85.LI Yuan,MAO Rui,REN Liming,et al.Numerical simulation of static mixer layout and ammonia injection optimization of a SCR system under non-uniform intake flow conditions[J].Journal of Engineering for Thermal Energy and Power,2021,36(6):78-85.
- [20] 葛铭,姚宣,刘柱,等,分区控制式喷氨格栅脱硝系统流场及喷氨均匀性研究[J].煤炭转化,2022,45(3):95-102.GE Ming,YAO Xuan,LIU Zhu,et al.Study on flow field uniformity and ammonia injection uniformity of partition controlled ammonia injection grid in denitrification system[J].Coal Conversion,2022,45(3):95-102.
- [21] 罗志,牛国平,王晓冰,等.分区混合动态喷氨技术工程应用[J].热力发电,2018,47(8):125-131.LUO Zhi,NIU Guoping,WANG Xiaobing,et al.Engineering application of dynamic ammonia injection technology based on partition mixing[J].Thermal Power Generation,2018,47(8):125-131.