SPH modeling of biomass granular flow: Theoretical implementation and experimental validation

被引:7
作者
Zhao, Yumeng [1 ,2 ]
Jin, Wencheng [1 ]
Klinger, Jordan [1 ]
Dayton, David C. [3 ]
Dai, Sheng [2 ]
机构
[1] Idaho Natl Lab, Energy & Environm Sci & Technol Directorate, Idaho Falls, ID 83415 USA
[2] Georgia Inst Technol, Sch Civil & Environm Engn, Atlanta, GA USA
[3] RTI Int, Technol Adv & Commercializat, Res Triangle Pk, NC USA
关键词
SPH; Granular flow modeling; Granular biomass materials; Angle of repose; Axial compression; SMOOTHED PARTICLE HYDRODYNAMICS; LARGE-DEFORMATION; FORMULATION; FEEDSTOCKS; SIMULATION; PARAMETERS; BEHAVIOR; SOLVER; SILO;
D O I
10.1016/j.powtec.2023.118625
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The commercialization of biomass-derived energy is impeded by flowability challenges arising from the feeding and handling of granular biomass materials in full-scale biorefineries. To overcome these obstacles, a robust and accurate model to simulate the flow of granular biomass is indispensable. However, conventional mesh-based numerical codes are limited by inherent mesh distortion in simulating large deformation that commonly occurs in granular biomass handling. In this study, we propose a graphics processing unit (GPU)-accelerated meshless Smoothed Particle Hydrodynamics (SPH) code to model the flow of granular biomass materials. A modified void ratio-based mass conversation, a hybrid particle-to-particle/surface frictional boundary treatment, and a hypoplastic constitutive model are implemented. Four numerical examples, an elastic block sliding on inclined planes, sand column collapse, Angle of Repose, and axial compression tests for pine chips, were simulated using the developed SPH code. The results demonstrate good agreement between numerical predictions and analytical and experimental data for all four examples, validating the SPH code and increasing confidence that it can be applied to simulate more complex granular biomass handling processes, such as hopper feeding or auger conveyance.
引用
收藏
页数:12
相关论文
共 50 条
  • [41] Flow analysis and validation of numerical modelling for a thin walled high pressure die casting using SPH
    Cleary, Paul W.
    Savage, Gary
    Ha, Joseph
    Prakash, Mahesh
    COMPUTATIONAL PARTICLE MECHANICS, 2014, 1 (03) : 229 - 243
  • [42] FLOW MODELING IN HIGH-PRESSURE DIE-CASTING PROCESSES USING SPH MODEL
    Hu, M. Y.
    Cai, J. J.
    Li, N.
    Yu, H. L.
    Zhang, Y.
    Sun, B.
    Sun, W. L.
    INTERNATIONAL JOURNAL OF METALCASTING, 2018, 12 (01) : 97 - 105
  • [43] GPU-accelerated smoothed particle hydrodynamics modeling of granular flow
    Chen, Jian-Yu
    Lien, Fue-Sang
    Peng, Chong
    Yee, Eugene
    POWDER TECHNOLOGY, 2020, 359 : 94 - 106
  • [44] Meshfree Process Modeling and Experimental Validation of Friction Riveting of Aluminum 5052 to Aluminum 6061
    Li, Lei
    Pole, Mayur
    Das, Hrishikesh
    Niverty, Sridhar
    Reza-E-Rabby, Md
    Dos Santos, Jorge F.
    Soulami, Ayoub
    LIGHT METALS 2024, 2024, : 298 - 305
  • [45] Experimental validation of a particle-based method for heat transfer incorporating interstitial gas conduction in dense granular flow using a rotary drum
    Hobbs, Andrew M.
    Ooi, Jin Y.
    Adepu, Manogna
    Emady, Heather
    ADVANCED POWDER TECHNOLOGY, 2022, 33 (02)
  • [46] Theoretical modeling and experimental validation of transport and separation properties of carbon nanotube electrospun membrane distillation
    Lee, Jung-Gil
    Lee, Eui-Jong
    Jeong, Sanghyun
    Guo, Jiaxin
    An, Alicia Kyoungjin
    Guo, Hong
    Kim, Joonha
    Leiknes, TorOve
    Ghaffour, Noreddine
    JOURNAL OF MEMBRANE SCIENCE, 2017, 526 : 395 - 408
  • [47] Multiscale modeling of rapid granular flow with a hybrid discrete-continuum method
    Chen, Xizhong
    Wang, Junwu
    Li, Jinghai
    POWDER TECHNOLOGY, 2016, 304 : 177 - 185
  • [48] Theoretical modeling and experimental analysis of single-grain scratching mechanism of fused quartz glass
    Lin, Bin
    Li, Shi-peng
    Cao, Zhong-Chen
    Zhang, Yunfei
    Jiang, Xiang-Min
    JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2021, 293
  • [49] Deposition and slag flow modeling with SPH for a generic gasifier with different coal ashes using fusibility data
    Kurowski, M. -P.
    Spliethoff, H.
    FUEL, 2016, 172 : 218 - 227
  • [50] Smoothed particle hydrodynamics for coarse-grained modeling of rapid granular flow
    Deng, Lijuan
    Wang, Wei
    PARTICUOLOGY, 2015, 21 : 173 - 178