Fluid-solid drag models selection for simulating wheat straw particle movement in anaerobic digester
Abstract
Key words: wheat straw particle, drag model, shape coefficient, image analysis, micro PIV measurement
DOI: 10.25165/j.ijabe.20231602.8003
Citation: Yang Y, Zhu H G. Fluid-solid drag models selection for simulating wheat straw particle movement in anaerobic digester. Int J Agric & Biol Eng, 2023; 16(2): 249–258.
Keywords
Full Text:
PDFReferences
Huo L L, Yao Z L, Jia J X, Zhao L X, Cong H B, Meng H B, et al. Evaluation of different clean heat supply modes based on crop straws in the rural area of Northern China. Int J Agric & Biol Eng, 2020; 13(5): 209-217.
Zhang Z P, Zhang Q G, Yue J Z, Li L H, Zhang T, Liu Z B. CFD modeling and experiment of heat transfer in a tubular photo-bioreactor for photo-fermentation bio-hydrogen production. Int J Agric & Biol Eng, 2017; 10(1): 209-217.
Tong H, Zhou B Y, Liu C M, Wachemo A C, Li X J, Zuo X Y. Improving biomethane yield by strengthening acidification of maize stover in two-phase anaerobic digestion. Int J Agric & Biol Eng, 2020; 13(4): 226-231.
Chi Y, Wang Y, Li M F, Ren J, Chi Y J. Numerical simulation and experimental study on eggshell membrane separation device. Int J Agric & Biol Eng, 2019; 12(2): 173-183.
Das T, Usher S P, Batstone D J, Rees C A, Stickland A D, Eshtiaghi N. Shear and solid-liquid separation behaviour of anaerobic digested sludge across a broad range of solids concentrations. Water Research, 2022; 222:118903.
Luo J, Meng H B, Yao Z L, Wachemo A C, Yuan H R, Zhang L, et al. Anaerobic co-digestion of sodium hydroxide pretreated sugarcane leaves with pig manure and dairy manure. Int J Agric & Biol Eng, 2018; 11(4): 224-229.
Annas S, Elfering M L, Jantzen H A, Scholz J, Janoske U. Experimental analysis of mixing-processes in biogas plants. Chemical Engineering Science, 2022; 258:117767.
Neuner T, Meister M, Pillei M, Koch M, Rauch W. Numerical and experimental flow investigation using ultrasonic PIV for optimizing mechanically agitated lab-scale anaerobic digesters. Chemical Engineering Science, 2022; 264: 118-129.
Cui Y Y, Zhang H B, Li X W, Yang M J, Guan Z L. Computational and experimental investigation of laminar flow mixing system in a pitched-blade turbine stirred tank. Int J Agric & Biol Eng, 2018; 11(4): 111-117.
Leonzio G. Study of mixing systems and geometric configurations for anaerobic digesters using CFD analysis. Renewable Energy, 2018; 123: 578-589.
Wang J, Xue Q W, Guo T, Mei Z L, Long E S, Wen Q, et al. A review on CFD simulating method for biogas fermentation material fluid. Renewable and Sustainable Energy Reviews, 2018; 97: 64-73.
Zhang Y, Yu G R, Siddhu M A H, Masroor A, Ali M F, Abdeltawab A A, et al. Effect of impeller on sinking and floating behavior of suspending particle materials in stirred tank: A computational fluid dynamics and factorial design study. Advanced Powder Technology, 2017; 28(4): 1159-1169
Li L L, Wang K, Wei L L, Zhao Q L, Zhou H M, Jiang J Q. CFD simulation and performance evaluation of gas mixing during high solids anaerobic digestion of food waste. Biochemical Engineering Journal, 2022; 178: 108279. doi.org/10.1016/j.bej.2021.108279.
Li J, Suvarna M, Li L Y, Pan L J, Pérez-Ramírez J, Ok S Y, Wang X N. A review of computational modeling techniques for wet waste valorization: Research trends and future perspectives. Journal of Cleaner Production, 2022; 367: 133025.
Yu L, Ma J W, Frear C, Zhao Q B, Dillon R, Li X J, Chen S L. Multiphase modeling of settling and suspension in anaerobic digester. Applied Energy, 2013; 111: 28-39.
Trad Z, Vial C, Fontaine J P, Larroche C. Mixing and liquid-to-gas mass transfer under digester operating conditions. Chemical Engineering Science, 2017; 170: 606-627
Das T, Usher S P, Batstone D J, Rees A C, Stickland D A. Nicky Eshtiaghi. Shear and solid-liquid separation behaviour of anaerobic digested sludge across a broad range of solids concentrations. Water Research, 2022; 222:118903.
Yang Y, Zhu H G. Clustering and modelling of rheological parameters for anaerobic digestion materials (ADMs) and its application for feed pump selection. IOP Conference Series: Earth and Environmental Science, 2020; 467: 012053. doi: 10.1088/1755-1315/467/1/012053.
Guo H G, Li Q, Wang L L, Chen Q L, Hu H W, Cheng D J, et al. Semi-solid state promotes the methane production during anaerobic co-digestion of chicken manure with corn straw comparison to wet and high-solid state. Journal of Environmental Management, 2022; 316: 115264.
Naegele H, Mönch-Tegeder M, Haag N L, Oechsner H. Effect of substrate pretreatment on particle size distribution in a full-scale research biogas plant. Bioresource Technology, 2014; 172: 396-402.
Rezavand M, Winkler D, Sapp J, Seiler L, Meister M, Rauch W. A fully Lagrange computational model for the integration of mixing and biochemical reactions in anaerobic digestion. Computers & Fluids, 2019; 181: 224-235.
Sheikh A H, Savari C, Barigou M. A data-driven stochastic model for velocity field and phase distribution in stirred particle-liquid suspensions. Powder Technology, 2022; 411: 117940. doi: 10.1016/j.powtec. 2022.117940.
Danican A, Darrehmane A, Chateau T, Trad Z, Fontaine J P, Vial C. Development of a multiparticle optical trajectography technique for hydrodynamic analysis of a stirred tank devoted to dark fermentation, Chemical Engineering Journal, 2022; 453: 139521. doi: 10.1016/j.cej.2022.139521.
Schiller L, Naumann A. A drag coefficient correlation. Zeitschrift des Vereins Deutscher Ingenieure, 1935; 77: 318-320.
Gerhardter H, Prieler R, Mayr B, Knoll M, Mühlböck M, Tomazic P, et al. Evaluation of drag models for particles and powders with non-uniform size and shape. Powder Technology, 2018; 330: 152-163.
Haider A, Levenspiel O. Drag coefficient and terminal velocity of spherical and nonspherical particles, Powder Technol, 1989; 58: 63-70.
Richter A, Nikrityuk A P. Drag forces and heat transfer coefficients for spherical, cuboidal and ellipsoidal. particles in cross flow at sub-critical Reynolds numbers. International Journal of Heat and Mass Transfer, 2012; 55: 1343-1354.
Kishore N, Gu S. Momentum and heat transfer phenomena of spheroid particles at moderate Reynolds and Prandtl numbers, Int. J. Heat Mass Transf, 2011; 54: 2595-2601.
Dioguardi F, Dellino P, Mele D. Integration of a new shape-dependent particle–fluid drag coefficient law in the multiphase Eulerian–Lagrange code MFIX-DEM. Powder Technology, 2014; 260: 68-77.
Hölzer A, Sommerfeld M. New simple correlation formula for the drag coefficient of non-spherical particles. Powder Technology, 2008; 184: 361-365.
Mema I, Mahajan V V, Fitzgerald W B, Padding T J. Effect of lift force and hydrodynamic torque on fluidisation of non-spherical particles. Chemical Engineering Science, 2019; 195: 642-656.
Nikku M, Jalali P, Ritvanen J, Hyppänen T. Characterization method of average gas–solid drag for regular and irregular particle groups. Powder Technology, 2014; 253: 284-294.
Carranza F, Zhang Y. Study of drag and orientation of regular particles using stereo vision, Schlieren photography and digital image processing, Powder Technol, 2017; 311: 185-199.
Hu Y Y, W J, Poncin S, Cao Z P, Li Z H, Li Z H. Flow field investigation of high solid anaerobic digestion by Particle Image Velocimetry (PIV). Science of the Total Environment, 2018; 626: 592-602.
Dapelo D, Alberini F, Bridgeman J. Euler-Lagrange CFD modelling of unconfined gas mixing in anaerobic digestion. Water Research, 2015; 85: 497-511.
Copyright (c) 2023 International Journal of Agricultural and Biological Engineering
This work is licensed under a Creative Commons Attribution 4.0 International License.