DING Zhi-min, JIANG Xin, WEI Guo, SHEN Feng-man. Numerical Simulation for the Influence of Cohesive Zone Shape on Distribution of Unburned Pulverized Coal in Blast Furnace[J]. Journal of Northeastern University Natural Science, 2018, 39(9): 1242-1247.
[1]Shen Y S,Yu A B,Peter A,et al.Modelling in-furnace phenomena of pulverized coal injection in ironmaking blast furnace:effect of coke bed porosities[J].Minerals Engineering,2012,33:54-65. [2]Nomura S,Callcott T G.Maximum rates of pulverized coal injection in ironmaking blast furnaces[J].ISIJ International,2011,51(7):1033-1043. [3]The Technical Society,the Iron and Steel Institute of Japan.Production and technology of iron and steel in Japan during 2015[J].ISIJ International,2016,56(6):905-916. [4]刘新,陈星秋.未燃煤粉在高炉内的分布特性的实验研究[J].东北大学学报(自然科学版),2000,21(2):177-179.(Liu Xin,Chen Xing-qiu.Experimental investigation on behavior of UPC (unburnt pulverized coal)in blast furnace[J].Journal of Northeastern University(Natural Science),2000,21(2):177-179.) [5]李洪会,孙亮,沈峰满,等.未燃煤粉在填充床内的分布及对料柱压差的影响[J].东北大学学报(自然科学版),2001,22(3):303-305.(Li Hong-hui,Sun Liang,Shen Feng-man,et al.Distribution of unburned pulverized coal and effects on pressure drop of gas in packed bed [J].Journal of Northeastern University(Natural Science),2001,22(3):303-305.) [6]Dong X F,Zhang S J,Pinson D,et al.Gas-powder flow and powder accumulation in a packed bed:I.experimental study[J].Powder Technology,2004,149(1):1-9. [7]Nogami H,Austin P R,Yagi J,et al.Numerical investigation on effects of deadman structure and powder properties on gas and powder flows in lower part of blast furnace[J].ISIJ International,2004,44(3):500-509. [8]Dong X F,Zhang S J,Pinson D,et al.Gas-powder flow and powder accumulation in a packed bed:Ⅱ.numerical study [J].Powder Technology,2004,149(1):10-22. [9]Pintowantoro S,Nogami H,Yagi J.Numerical analysis of static holdup of fine particles in blast furnace[J].ISIJ International,2004,44(2):304-309. [10]Hidaka N,Matsumoto T,Kusakabe K,et al.Flow of fine particles entrained by upward gas flow in packed beds of coarse particles[J].Journal of Chemical Engineering of Japan,1999,32(2):197-203. [11]丁智敏,姜鑫,张枥,等.未燃煤粉在高炉中堆积分布的数值模拟[C]//2016年全国高炉炼铁学术年会论文集.邯郸:中国金属学会,2016:576-583.(Ding Zhi-min,Jiang Xin,Zhang Li,et al.Numerical simulation on the distribution of unburned pulverized coal in blast furnace[C] //The Conference of Blast Furnace Ironmaking of China in 2016.Handan:The Chinese Society for Metals,2016:576-583.) [12]于海彬,陈义胜.软熔带对煤气流动影响的数值模拟[J].包头钢铁学院学报,2006,25(1):1-4.(Yu Hai-bin,Chen Yi-sheng.Numerical simulation of influence on gas flow caused by cohesive zone[J].Journal of Baotou University of Iron and Steel Technology,2006,25(1):1-4.) [13]周传典.高炉炼铁生产技术手册[M].北京:冶金工业出版社,2008:129.(Zhou Chuan-dian.Technical manuals of blast furnace ironmaking production[M].Beijing:Metallurgical Industry Press,2008:129.) [14]解维伟.煤化学与煤质分析[M].北京:冶金工业出版社,2012:116.(Xie Wei-wei.Coal chemistry and coal quality analysis[M].Beijing:Metallurgical Industry Press,2012:116.)(上接第1236页) [24]Ge Y,Law M,Johnson G,et al.Preferential occult injury of corpus callosum in multiple sclerosis measured by diffusion tensor imaging[J].Journal of Magnetic Resonance Imaging,2004,20(1):1-7. [25]Aboitiz F,Scheibel A B,Fisher R S,et al.Fiber compositon of the human corpus callosum[J].Brain Research,1992,598(1/2):143-153. [26]于春水,李坤城,秦文,等.多发性硬化患者胼胝体的弥散张量纤维束成像定量研究[J].中国医学影像技术,2005,21(6):846-849.(Yu Chun-shui,Li Kun-cheng,Qin Wen,et al.Quantitative study of diffusion tensor fibers imaging in the corpus callosum of patients with multiple sclerosis[J].Chinese Medical Imaging Technology,2005,21(6):846-849.) [27]Sbardella E,Tona F,Petsas N,et al.DTI measurements in multiple sclerosis:evaluation of brain damage and clinical implications[J].Multiple Sclerosis International,2013(2013):671730. [28]李郁欣,耿道颖,姜兴岳,等.多发性硬化的正常表现脑白质的DTI定量[J].中国医学计算机成像杂志,2007,13:148-152.(Li Yu-xin,Geng Dao-ying,Jiang Xing-yue,et al.DTI quantification of normal expression of multiple sclerosis[J].Chinese Medical Computer Imaging Journal,2007,13:148-152.) [29]周福庆,Zee Chi-shing,龚洪翰,等.复发-缓解型多发性硬化边缘系统白质纤维束定量DTI改变[J].实用放射学杂志,2010,26(3):305-308.(Zhou Fu-qing,Zee Chi-shing,Gong Hong-han,et al.Quantitative DTI changes in white matter fiber bundle in the limbic system of relapse-relief multiple sclerosis[J].Journal of Practical Radiology,2010,26(3):305-308.) [30]段云云,李坤城.复发-缓解型多发性硬化患者丘脑扩散张量成像研究[J].中国现代神经疾病杂志,2012(2):143-146.(Duan Yun-yun,Li Kun-cheng.Imaging study of thalamic diffusion tensor in patients with relapsing-remitting multiple sclerosis[J].China Journal of Modern Neurological Diseases,2012(2):143-146.)[31]Werring D J,Brassat D,Droogan A G,et al.The pathogenesis of lesions and normal-appearing white matter changes in multiple sclerosis:a serial diffusion MRI study[J].Brain,2000,123(8):1667-1676.[32]Bammer R,Augustin M,Strasser F,et al.Magnetic resonance diffusion tensor imaging for characterizing diffuse and focal white matter abnormalities in multiple sclerosis[J].Magnetic Resonance in Medicine,2000,44(4):583-591.[33]Filippi M,Cercignani M,Inglese M,et al.Diffusion tensor magnetic resonance imaging in multiple sclerosis[J].Neurology,2001,56(3):304-311.