Search

Article

x

留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

Discrete element simulation of mechanical properties of wet granular pile

Zhao La-La Zhao Yue-Min Liu Chu-Sheng Li Jun

Citation:

Discrete element simulation of mechanical properties of wet granular pile

Zhao La-La, Zhao Yue-Min, Liu Chu-Sheng, Li Jun
PDF
Get Citation

(PLEASE TRANSLATE TO ENGLISH

BY GOOGLE TRANSLATE IF NEEDED.)

  • Discrete element method (DEM) simulations for pile-up processes of different particle systems were performed based on linear cohesion contact model. Effects of particle shape and liquid bridge force between wet particles on the piling form were analyzed. The significant central dip profiles of normal force acting on the base surface, normal force and tangential force between particles were predicted. Effects of particle shape and cohesion energy density on the forces on the base surface and inter-particles were described. The results show that particle shape and the liquid bridge force have significant impacts on the piling form. With the increase of the cohesion energy density the angle of repose for each granular pile increases. But the angle of repose of cubical particles is bigger than that of spherical particles under the same condition. Particle shape and the liquid bridge force also significantly affect the change and the maximum amplitude of the forces acting on the base surface and the forces between the particles. The maximum amplitude of the forces increases with the increase of the cohesion energy density, and the value of the maximum force on cubical particles is bigger than that on spherical particles. When the value of cohesion energy density is very large, the mechanical properties of granular piles become more complicated, so that the liquid bridge force has a larger impact on the packing characteristic of particles than the impact on particle shape.
    • Funds: Project supported by the National Basic Research Program of China(Grant No. 2012CB214900), the National Natural Science Foundation of China (Grant Nos. 51134022, 51221462, 51204181), the Specialized Research Fund for the Doctoral Program of Higher Education of China (Grant No. 20110095120004), the China Postdoctoral Science Foundation (Grant Nos. 20110491485, 2013T60576), and the Fundamental Research Funds for the Central Universities of Ministry of Education of China (Grant No. 2011QNA10).
    [1]

    Li Y Y, Xia W, Zhou Z Y, He K J, Zhong W Z, Wu Y B 2010 Chin. Phys. B 19 024601

    [2]

    Wittmer J P, Claudin P, Cates M E, Bouchaud J P 1996 Nature 382 336

    [3]

    Xie X M, Jiang Y M, Wang H Y, Cao X P, Liu Y 2003 Acta Phys. Sin. 52 2194 (in Chinese) [谢晓明, 蒋亦民, 王焕友, 曹晓平, 刘佑 2003 物理学报 52 2194]

    [4]

    Geng J, Longhi E, Rehringer R P, Howell D W 2001 Phys. Rev. E 64 060301

    [5]

    Silbert L E, Grest G S, Landy J W 2002 Phys. Rev. E 66 061303

    [6]

    Sun Q C, Wang G Q Acta Phys. Sin. 57 4667 (in Chinese) [孙其诚, 王光谦 2008 物理学报 57 4667]

    [7]

    Zhao Y Z, Jiang M Q, Xu P, Zheng J X Acta Phys. Sin. 58 1819 (in Chinese) [赵永志, 江茂强, 徐 平, 郑津洋 2009 物理学报 58 1819]

    [8]

    Zhang Q W, Jiang Y M, Zuo J, Zheng H P, Peng Z, Fu L P, Jiang L 2010 Chinese Sci. Bull 55 316 (in Chinese) [张庆武, 蒋亦民, 左静, 郑鹤鹏, 彭郑, 符力平, 蒋礼 2010 科学通报 55 316]

    [9]

    Carlevaro C M, Pugnaloni L A 2012 Eur. Phys. J. E 35 12044

    [10]

    Matutti H G, Luding S, Herrmann H J 2000 Powder Tchnol. 109 278

    [11]

    Cleary P W 2009 Eng Computation 26 698

    [12]

    Cleary P W 2010 Particuology 8 106

    [13]

    Mitarai N, Nori F 2006 Adv. Phys. 55 1

    [14]

    Zuriguel I, Mullin T 2008 Proc. R. Soc. A 464 99

    [15]

    Zhou C, Ooi J Y 2009 Mech. Mater. 41 707

    [16]

    Samadani A, Kudrolli A 2001 Phy. Rev. E 64 051301

    [17]

    Zhu H P, Zhou Z Y, Yang R Y, Yu A B 2008 Chem. Eng. Sci. 63 5728

    [18]

    Zhao J, Li S X 2008 Chin. Phys. Lett. 25 4034

    [19]

    Li S X, Zhao J, Zhou X 2008 Chin. Phys. Lett. 25 1724

    [20]

    Langston P A, Awamleh M A, Fraige F Y, Asmar B N 2004 Chemical Engineering Science 59 425

    [21]

    Zhao L L, Liu C S, Yan J X, Xu Z P 2010 Acta Phys. Sin. 59 1874 (in Chinese) [赵啦啦, 刘初升, 闫俊霞, 徐志鹏 2010 物理学报 59 1874]

    [22]

    Zhao L L, Liu C S, Yan J X, Jiao X W, Zhu Y 2010 Acta Phys. Sin. 59 2582 (in Chinese) [赵啦啦, 刘初升, 闫俊霞, 蒋小伟, 朱艳 2010 物理学报 59 2582]

    [23]

    Gao H L, Chen Y C, Zhao Y Z, Zheng J Y 2011 Acta Phys. Sin. 60 12 (in Chinese) [高红利, 陈友川, 赵永志, 郑津洋 2011 物理学报 60 12]

    [24]

    Zhao Y Z, Cheng Y 2008 Acta Phys. Sin. 57 322 (in Chinese) [赵永志, 程易 2008 物理学报 57 322]

    [25]

    Chen X M 2001 M. E. Dissertation (Xuzhou: China University of Mining & Technology) (in Chinese) [陈惜明 2001 硕士学位论文(徐州: 中国矿业大学)]

    [26]

    Wang K 2012 M. E. Dissertation (Xuzhou: China University of Mining & Technology) (in Chinese) [王可 2012 硕士学位论文(徐州: 中国矿业大学)]

  • [1]

    Li Y Y, Xia W, Zhou Z Y, He K J, Zhong W Z, Wu Y B 2010 Chin. Phys. B 19 024601

    [2]

    Wittmer J P, Claudin P, Cates M E, Bouchaud J P 1996 Nature 382 336

    [3]

    Xie X M, Jiang Y M, Wang H Y, Cao X P, Liu Y 2003 Acta Phys. Sin. 52 2194 (in Chinese) [谢晓明, 蒋亦民, 王焕友, 曹晓平, 刘佑 2003 物理学报 52 2194]

    [4]

    Geng J, Longhi E, Rehringer R P, Howell D W 2001 Phys. Rev. E 64 060301

    [5]

    Silbert L E, Grest G S, Landy J W 2002 Phys. Rev. E 66 061303

    [6]

    Sun Q C, Wang G Q Acta Phys. Sin. 57 4667 (in Chinese) [孙其诚, 王光谦 2008 物理学报 57 4667]

    [7]

    Zhao Y Z, Jiang M Q, Xu P, Zheng J X Acta Phys. Sin. 58 1819 (in Chinese) [赵永志, 江茂强, 徐 平, 郑津洋 2009 物理学报 58 1819]

    [8]

    Zhang Q W, Jiang Y M, Zuo J, Zheng H P, Peng Z, Fu L P, Jiang L 2010 Chinese Sci. Bull 55 316 (in Chinese) [张庆武, 蒋亦民, 左静, 郑鹤鹏, 彭郑, 符力平, 蒋礼 2010 科学通报 55 316]

    [9]

    Carlevaro C M, Pugnaloni L A 2012 Eur. Phys. J. E 35 12044

    [10]

    Matutti H G, Luding S, Herrmann H J 2000 Powder Tchnol. 109 278

    [11]

    Cleary P W 2009 Eng Computation 26 698

    [12]

    Cleary P W 2010 Particuology 8 106

    [13]

    Mitarai N, Nori F 2006 Adv. Phys. 55 1

    [14]

    Zuriguel I, Mullin T 2008 Proc. R. Soc. A 464 99

    [15]

    Zhou C, Ooi J Y 2009 Mech. Mater. 41 707

    [16]

    Samadani A, Kudrolli A 2001 Phy. Rev. E 64 051301

    [17]

    Zhu H P, Zhou Z Y, Yang R Y, Yu A B 2008 Chem. Eng. Sci. 63 5728

    [18]

    Zhao J, Li S X 2008 Chin. Phys. Lett. 25 4034

    [19]

    Li S X, Zhao J, Zhou X 2008 Chin. Phys. Lett. 25 1724

    [20]

    Langston P A, Awamleh M A, Fraige F Y, Asmar B N 2004 Chemical Engineering Science 59 425

    [21]

    Zhao L L, Liu C S, Yan J X, Xu Z P 2010 Acta Phys. Sin. 59 1874 (in Chinese) [赵啦啦, 刘初升, 闫俊霞, 徐志鹏 2010 物理学报 59 1874]

    [22]

    Zhao L L, Liu C S, Yan J X, Jiao X W, Zhu Y 2010 Acta Phys. Sin. 59 2582 (in Chinese) [赵啦啦, 刘初升, 闫俊霞, 蒋小伟, 朱艳 2010 物理学报 59 2582]

    [23]

    Gao H L, Chen Y C, Zhao Y Z, Zheng J Y 2011 Acta Phys. Sin. 60 12 (in Chinese) [高红利, 陈友川, 赵永志, 郑津洋 2011 物理学报 60 12]

    [24]

    Zhao Y Z, Cheng Y 2008 Acta Phys. Sin. 57 322 (in Chinese) [赵永志, 程易 2008 物理学报 57 322]

    [25]

    Chen X M 2001 M. E. Dissertation (Xuzhou: China University of Mining & Technology) (in Chinese) [陈惜明 2001 硕士学位论文(徐州: 中国矿业大学)]

    [26]

    Wang K 2012 M. E. Dissertation (Xuzhou: China University of Mining & Technology) (in Chinese) [王可 2012 硕士学位论文(徐州: 中国矿业大学)]

  • [1] Du Qing-Xin, Sun Qi-Cheng, Ding Hong-Sheng, Zhang Guo-Hua, Fan Yan-Li, An Fei-Fei. Experimental study on bulk modulus and dissipation of dry and wet granular samples under vertical vibration. Acta Physica Sinica, 2022, 71(18): 184501. doi: 10.7498/aps.71.20220329
    [2] Cheng Hao, Han Pei-Feng, Su You-Wen. Sliding and accumulation characteristics of loose materials and its influencing factors based on discrete element method. Acta Physica Sinica, 2020, 69(16): 164501. doi: 10.7498/aps.69.20200223
    [3] Tang Han-Yu, Wang Na, Wu Xue-Bang, Liu Chang-Song. Wet granular matter mechanical spectroscopy under low-frequency shear. Acta Physica Sinica, 2018, 67(20): 206402. doi: 10.7498/aps.67.20180966
    [4] Wang Si-Qiang, Ji Shun-Ying. Discrete element analysis of buffering capacity of non-spherical granular materials based on super-quadric method. Acta Physica Sinica, 2018, 67(9): 094501. doi: 10.7498/aps.67.20172549
    [5] Jiao Yang, Zhang Xin-Xi, Kong Fan-Cheng, Liu Hair-Shun. Discrete element simulation of impact disaggregation for wet granule agglomerate. Acta Physica Sinica, 2015, 64(15): 154501. doi: 10.7498/aps.64.154501
    [6] Li Shu-Chen, Ping Yang, Li Shu-Cai, Kou Qiang, Ma Teng-Fei, Feng Bing-Yang. Particles discrete element method based on manifold cover for macro-mesoscopic fracture of rock mass. Acta Physica Sinica, 2014, 63(5): 050202. doi: 10.7498/aps.63.050202
    [7] Zhang Fu-Weng, Wang Li, Liu Chuan-Ping, Wu Ping. The rising motion of grains in a vibrating pipe. Acta Physica Sinica, 2014, 63(1): 014501. doi: 10.7498/aps.63.014501
    [8] Wu Di-Ping, Li Xing-Xiang, Qin Qin, Guan Ben, Zang Yong. Study on mechanical behavior of the transverse processing on a granular matter layer. Acta Physica Sinica, 2014, 63(9): 098201. doi: 10.7498/aps.63.098201
    [9] He Ke-Jing, Zhang Jin-Cheng, Zhou Xiao-Qiang. Simulation of the projectile dynamics in granular media. Acta Physica Sinica, 2013, 62(13): 130204. doi: 10.7498/aps.62.130204
    [10] Gao Hong-Li, Chen You-Chuan, Zhao Yong-Zhi, Zheng Jin-Yang. Simulation of mixing process for size-type binary wet particulate systems in a rotating horizontal drum by discrete element method. Acta Physica Sinica, 2011, 60(12): 124501. doi: 10.7498/aps.60.124501
    [11] Zhao La-La, Liu Chu-Sheng, Yan Jun-Xia, Jiang Xiao-Wei, Zhu Yan. Numerical simulation of particle segregation behavior in different vibration modes. Acta Physica Sinica, 2010, 59(4): 2582-2588. doi: 10.7498/aps.59.2582
    [12] Zhao La-La, Liu Chu-Sheng, Yan Jun-Xia, Xu Zhi-Peng. Numerical simulation on segregation process of particles using 3D discrete element method. Acta Physica Sinica, 2010, 59(3): 1870-1876. doi: 10.7498/aps.59.1870
    [13] Dai Bing, Luo Xiang-Dong, Wang Ya-Wei. Multiple light scattering of non-spherical particles with elliptical cross section. Acta Physica Sinica, 2009, 58(6): 3864-3869. doi: 10.7498/aps.58.3864
    [14] Zhao Yong-Zhi, Jiang Mao-Qiang, Xu Ping, Zheng Jin-Yang. Discrete element simulation of the microscopic mechanical structure in sandpile. Acta Physica Sinica, 2009, 58(3): 1819-1825. doi: 10.7498/aps.58.1819
    [15] Zhong Wen-Zhen, He Ke-Jing, Zhou Zhao-Yao, Xia Wei, Li Yuan-Yuan. Physical model and simulation system of powder packing. Acta Physica Sinica, 2009, 58(13): 21-S28. doi: 10.7498/aps.58.21
    [16] Zhong Wen-Zhen, He Ke-Jing, Zhou Zhao-Yao, Xia Wei, Li Yuan-Yuan. Calibration of damping coefficient in discrete element method simulation. Acta Physica Sinica, 2009, 58(8): 5155-5161. doi: 10.7498/aps.58.5155
    [17] Yi Chen-Hong, Mu Qing-Sun, Miao Tian-De. The DEM simulation for two-dimension granular system with point defects. Acta Physica Sinica, 2008, 57(6): 3636-3640. doi: 10.7498/aps.57.3636
    [18] Miao Tian-De, Yi Chen-Hong, Qi Yan-Li, Mu Qing-Song, Liu Yuan. Force transmission in three-dimensional hexagonal-close-packed granular arrays submitted to a point load. Acta Physica Sinica, 2007, 56(8): 4713-4721. doi: 10.7498/aps.56.4713
    [19] Kong Wei-Shu, Hu Lin, Du Xue-Neng, Zhang Xing-Gang, Wang Wei-Ming, Wu Yu. Studies of maximum static friction force in granular pile with probing rod. Acta Physica Sinica, 2007, 56(4): 2318-2322. doi: 10.7498/aps.56.2318
    [20] XU MAN-HUA, WEI MING-JIAN. A METHOD FOR CALCULATING THE FORM SCATTERING FUNCTION OF NONSPHERICAL PARTICLE. Acta Physica Sinica, 1997, 46(12): 2389-2393. doi: 10.7498/aps.46.2389
Metrics
  • Abstract views:  6056
  • PDF Downloads:  1979
  • Cited By: 0
Publishing process
  • Received Date:  15 July 2013
  • Accepted Date:  03 November 2013
  • Published Online:  05 February 2014

/

返回文章
返回