[1] 张立栋,李少华,余侃胜,等. 油页岩与固体热载体在回转干馏炉内混合特性的冷态实验[J]. 化工进展,2011,30(3):492-497. ZHANG L D,LI S H,YU K S,et al. Cold experiments on mixing performance of oil shale particle and solid heat carrier in rotary retorting[J]. Chemical Industry and Engineering Progress,2011,30(3):492-497. [2] ISABEL F,VARGAS W L,MCCARTHY J J. Mixing and heat conduction in rotating tumblers[J]. Chemical Engineering Science,2010,65(2):1045-1054. [3] HILL K M,KHAKHAR D V,GILCHRIST J F,et al. Segregation-driven organization in chaotic granular flows[J]. Proc. Natl. Acad. Sci.,1999,96(21):11701-11706. [4] JAIN N,OTTINO J M,LUEPTOW R M. Combined size and density segregation and mixing in noncircular tumblers[J]. Phys.,2005,71(5):1-10. [5] 王擎,肖冠华,孔祥钊,等. 固体热载体干馏桦甸油页岩试验研究[J]. 东北电力大学学报,2013,33(5):15-21. WANG Q,XIAO G H,KONG X Z,et al. Experimental investigation of solid heat carrier retorting of huadian oil shale[J]. Journal of Northeast Dianli University,2013,33(5):15-21. [6] 陈辉,肖友刚,赵先琼,等. 回转窑内二元颗粒物料的径向混合[J]. 工程科学学报,2016,38(2):194-199. CHEN H,XIAO Y G,ZHAO X Q,et al. Transverse mixing of binary solid materials in a rotating kiln[J]. Chinese Journal of Engineering,2016,38(2):194-199. [7] 欧阳鸿武,张新,黄誓成,等. 转鼓中颗粒流动层厚度及其影响因素[J]. 粉末冶金材料科学与工程,2008,13(2):84-90. OUYANG H W,ZHANG X,HUANG S C,et al. Thickness of granular flowing layer and its influencing factors in rotating drum[J]. Materials Science and Engineering of Powder Metallurgy,2008,13(2):84-90. [8] JIANG M Q,ZHAO Y Z,LIU G S,et al. Enhancing mixing of particles by baffles in a rotating drum mixer[J]. Particuology,2011,9(3):270-278. [9] 张立栋,李少华,朱明亮,等. 回转干馏炉内抄板形式与双组元颗粒混合过程冷模数值研究[J]. 中国电机工程学报,2012,32(11):72-78. ZHANG L D,LI S H,ZHU M L,et al. Cold mode numerical analysis of flights forms and two component particles mixing in rotary retorting[J]. Proceedings of the CSEE,2012,32(11):72-78. [10] 张立栋,王丽伟,朱明亮,等. 回转干馏炉内油页岩与固体热载体颗粒轴向混合特性实验[J]. 东北电力大学学报,2012,32(6):63-66. ZHANG L D,WANG L W,ZHU M L,et al. Experimental on axis mixing degree of oil shale with solid heat carrier particles in rotary retorting[J]. Journal of Northeast Dianli University,2012,32(6):63-66. [11] 李少华,王丽伟. 回转炉内壁炉型结构对颗粒混合效果的影响[J]. 煤炭学报,2013,38(10):1878-1881. LI S H,WANG L W. Effects of the particle mixed on furnace inner structure of rotary kiln[J]. Journal of China Coal Society,2013,38(10):1878-1881. [12] 闫明,段文山,陈琼,等. 不同形状混合器中二元颗粒的分聚与混合研究[J]. 力学学报,2016,48(1):64-75. YAN M,DUAN W S,CHEN Q,et al. The segregation and mixing of binary granular systems in rotating mixer with different cross-sections[J]. Chinese Journal of Theoretical and Applied Mechanics,2016,48(1):64-75. [13] AMARA A A,CARL D,DENIS R. Transverse mixing of polymer powders in a rotary cylinder part Ⅰ:Active layer characterization[J]. Powder Technology,2012,219(3):193-201. [14] CHOU S H,HSIAU S S. Dynamic properties of immersed granular matter in different flow regimes in a rotating drum[J]. Powder Technology,2012,226(8):99-106. [15] 赵永志,程易. 水平滚筒内二元颗粒体系径向分离模式的数值模拟研究[J]. 物理学报,2008,57(1):322-328. ZHAO Y Z,CHENG Y. Numerical simulation of radial segregation patterns of bina granular systems in a rotating horizontal drum[J]. Acta Physica Sinica,2008,57(1):322-328. [16] GUPTA A,KATTERFELD A,SOETEMAN B,et al. Discrete element study mixing in an industrial sized mixer[DB/OL]. http://www.msm.ctw.utwente.nl/sluding/PAPERS/GuptaWCPT2010.pdf,2010:04-26. [17] PUYVELDE D R V,YOUNGE B R,WILSON M A,et al. Experimental determination of transverse mixing kinetics in a rolling drum image analysis[J]. Powder Technology,1999,106(3):183-191. [18] 张立栋,李连好,程硕,等. 颗粒在圆形偏心滚筒内的运动模式[J]. 化工进展,2015,34(9):3244-3247. ZHANG L D,LI L H,CHENG S,et al. Motion mode of particles in a circular eccentric drum[J]. Chemical Industry and Engineering Progress,2015,34(9):3244-3247 |