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502 工程科学学报,第43卷,第4期 [17]Yin S H,Wang L M,Chen X,et al.Seepage law of solution inside 律的形响.矿业研究与开发,2011,31(5):22) ore granular under condition of different heap constructions.J [22]Lo A,Nosrati A,Addai-Mensah J.Particle and pore dynamics Central South Univ Sci Technol,2018,49(4):949 under column leaching of goethitic and saprolitic nickel laterite (尹升华,王雷鸣,陈勋,等.不同堆体结构下矿岩散体内溶液渗 agglomerates.Ady Powder Technol,2016,27(6):2370 流规律.中南大学学报:自然科学版,2018,49(4):949) [23]Yang B H,Wu A X,Miao XX.3D micropore structure evolution [18]Yin S H,Wu A X,Hu K J,et al.Visualization of flow behavior of ore particles based on image processing.Chin J Eng,2016, during bioleaching of waste rock dumps under saturated and 38(3):328 unsaturated conditions.Hydrometallugy,2013,133:1 (杨保华,吴爱样,缪秀秀.基于图像处理的矿石颗粒三维微观 [19]Xue ZL,Zhang YZ,Liu Z Y,et al.Effects of ore shape on pore 孔隙结构演化.工程科学学报,2016,38(3):328) structure and seepage velocity field in heap leaching.China Min [24]Bird M B,Butler S L,Hawkes C D,et al.Numerical modeling of Mag,2018,27(12:128 fluid and electrical currents through geometries based on (薛振林,张有志,刘志义,等.矿石形状对浸堆结构及渗流场影 synchrotron X-ray tomographic images of reservoir rocks using 响机制.中国矿业,2018,27(12):128) Avizo and COMSOL.Comput Geosci,2014,73:6 [20]Liu C.Evolution of the Pore Structure and Flow in Granular Ore [25]Wu A X,Yin S H,Yao B H,et al.Study on preferential flow in Heaps for Copper Oxides Acid Leaching[Dissertation].Beijing: dump leaching of low-grade ores.Hydrometallurgy,2007,87(3- University of Science and Technology Beijing,2017 4):124 (刘超.酸浸条件下氧化铜矿岩散体孔隙结构及渗流演化规律 [26]Lai C S,Yu W Z,Chen S Y.The parameters affecting on heap [学位论文]北京:北京科技大学,2017) leaching of gold ore.Multipurpose Utilization Miner Resour, [21]Wu A X,Wang S Y,Yang B H.Effect of particle structure on 2013(6):9 permeability of leaching dump.Min Res Dev,2011,31(5):22 (赖才书,余文章,陈森煜.彩响金矿堆浸工艺的因素.矿产资源 (吴爱祥,王少勇,杨保华.堆浸散体颗粒结构对溶浸液渗流规 综合利用,2013(6):9)Yin S H, Wang L M, Chen X, et al. Seepage law of solution inside ore  granular  under  condition  of  different  heap  constructions. J Central South Univ Sci Technol, 2018, 49(4): 949 (尹升华, 王雷鸣, 陈勋, 等. 不同堆体结构下矿岩散体内溶液渗 流规律. 中南大学学报: 自然科学版, 2018, 49(4):949) [17] Yin S H, Wu A X, Hu K J, et al. Visualization of flow behavior during  bioleaching  of  waste  rock  dumps  under  saturated  and unsaturated conditions. Hydrometallurgy, 2013, 133: 1 [18] Xue Z L, Zhang Y Z, Liu Z Y, et al. Effects of ore shape on pore structure  and  seepage  velocity  field  in  heap  leaching. China Min Mag, 2018, 27(12): 128 (薛振林, 张有志, 刘志义, 等. 矿石形状对浸堆结构及渗流场影 响机制. 中国矿业, 2018, 27(12):128) [19] Liu C. Evolution of the Pore Structure and Flow in Granular Ore Heaps for Copper Oxides Acid Leaching[Dissertation].  Beijing: University of Science and Technology Beijing, 2017 ( 刘超. 酸浸条件下氧化铜矿岩散体孔隙结构及渗流演化规律 [学位论文]. 北京: 北京科技大学, 2017) [20] Wu  A  X,  Wang  S  Y,  Yang  B  H.  Effect  of  particle  structure  on permeability of leaching dump. Min Res Dev, 2011, 31(5): 22 (吴爱祥, 王少勇, 杨保华. 堆浸散体颗粒结构对溶浸液渗流规 [21] 律的影响. 矿业研究与开发, 2011, 31(5):22) Lo  A,  Nosrati  A,  Addai-Mensah  J.  Particle  and  pore  dynamics under  column  leaching  of  goethitic  and  saprolitic  nickel  laterite agglomerates. Adv Powder Technol, 2016, 27(6): 2370 [22] Yang B H, Wu A X, Miao X X. 3D micropore structure evolution of  ore  particles  based  on  image  processing. Chin J Eng,  2016, 38(3): 328 (杨保华, 吴爱祥, 缪秀秀. 基于图像处理的矿石颗粒三维微观 孔隙结构演化. 工程科学学报, 2016, 38(3):328) [23] Bird M B, Butler S L, Hawkes C D, et al. Numerical modeling of fluid  and  electrical  currents  through  geometries  based  on synchrotron  X-ray  tomographic  images  of  reservoir  rocks  using Avizo and COMSOL. Comput Geosci, 2014, 73: 6 [24] Wu A X, Yin S H, Yao B H, et al. Study on preferential flow in dump  leaching  of  low-grade  ores. Hydrometallurgy,  2007,  87(3- 4): 124 [25] Lai  C  S,  Yu  W  Z,  Chen  S  Y.  The  parameters  affecting  on  heap leaching  of  gold  ore. Multipurpose Utilization Miner Resour, 2013(6): 9 (赖才书, 余文章, 陈森煜. 影响金矿堆浸工艺的因素. 矿产资源 综合利用, 2013(6):9) [26] · 502 · 工程科学学报,第 43 卷,第 4 期
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