DEM Simulation of a Rotary Drum with Inclined Flights Using the Response Surface Methodology
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[1] J. Mellmann,et al. Modelling the final discharge angle in flighted rotary drums , 2022, Granular Matter.
[2] Yan Zhang,et al. Energy loss caused by the elbow of stiff shotcrete pneumatic conveying based on response surface method and CFD-DEM , 2022, Powder Technology.
[3] D. A. Santos,et al. Numerical evaluation of the granular mixing behavior in a flighted rotary drum through the Discrete Element Method , 2022, Powder Technology.
[4] C. R. Duarte,et al. A study of the design and arrangement of flights in a rotary drum , 2022, Powder Technology.
[5] Z. Yin,et al. Micromechanical Investigation of Particle-Size Effect of Granular Materials in Biaxial Test with the Role of Particle Breakage , 2022, Journal of Engineering Mechanics.
[6] Jinli Zhang,et al. Three-dimensional DEM simulation of polydisperse particle flow in rolling mode rotating drum , 2021, Powder Technology.
[7] V. Scherer,et al. Experimental analysis of the flight design effect on the temperature distribution in rotary kilns , 2021 .
[8] Lixin Xie,et al. A Novel Rotary Dryer Filled with Alumina Ceramic Beads for the Treatment of Industrial Wastewaters: Numerical Simulation and Experimental Study , 2021, Processes.
[9] S. Gong,et al. Sensitivity analysis of process parameters for granular mixing in an intensive mixer using response surface methodology , 2021, Powder Technology.
[10] E. Tsotsas,et al. Influence of the number of flights on the dilute phase ratio in flighted rotating drums by PTV measurements and DEM simulations , 2020 .
[11] E. Yazdani,et al. Three-dimensional heat transfer in a particulate bed in a rotary drum studied via the discrete element method , 2020 .
[12] Z. Yin,et al. Effect of particle shape on the progressive failure of shield tunnel face in granular soils by coupled FDM-DEM method , 2020, Tunnelling and Underground Space Technology.
[13] C. R. Duarte,et al. A fluid dynamic study of the active phase behavior in a rotary drum with flights of two and three segments , 2020 .
[14] Yuqing Feng,et al. Sensitivity analysis of particle contact parameters for DEM simulation in a rotating drum using response surface methodology , 2020 .
[15] Baosheng Jin,et al. Numerical Simulation of Flow Characteristics in an Inclining Rotating Kiln with Continuous Feeding , 2019, International Journal of Chemical Reactor Engineering.
[16] G. Viggiani,et al. Effect of particle morphology and contacts on particle breakage in a granular assembly studied using X-ray tomography , 2019, Granular Matter.
[17] Han-long Liu,et al. Effect of Particle Shape on Stress-Dilatancy Responses of Medium-Dense Sands , 2019, Journal of Geotechnical and Geoenvironmental Engineering.
[18] M. Trojosky. Rotary drums for efficient drying and cooling , 2019, Drying Technology.
[19] S. H. Hashemabadi,et al. DEM simulation of heat transfer of binary-sized particles in a horizontal rotating drum , 2018, Granular Matter.
[20] S. M. Nascimento,et al. Eulerian study of flights discharge in a rotating drum , 2018, The Canadian Journal of Chemical Engineering.
[21] Jia Wei Chew,et al. Simulation of the granular flow of cylindrical particles in the rotating drum , 2018, AIChE Journal.
[22] Yongzhi Zhao,et al. Modelling of the flow of ellipsoidal particles in a horizontal rotating drum based on DEM simulation , 2017 .
[23] Qinfu Hou,et al. DEM investigation of heat transfer in a drum mixer with lifters , 2017 .
[24] Jia Wei Chew,et al. DEM study of granular flow characteristics in the active and passive regions of a three‐dimensional rotating drum , 2016 .
[25] Eckehard Specht,et al. Experimental analysis of a flighted rotary drum to assess the optimum loading , 2015 .
[26] Eckehard Specht,et al. Transverse flow at the flight surface in flighted rotary drum , 2015 .
[27] Marcos A.S. Barrozo,et al. A hydrodynamic analysis of a rotating drum operating in the rolling regime , 2015 .
[28] Laurédan Le Guen,et al. A coupled thermal-granular model in flights rotary kiln: Industrial validation and process design , 2015 .
[29] Jochen Mellmann,et al. Influence of flight design on the particle distribution of a flighted rotating drum , 2013 .
[30] Dianhui Luo. Optimization of total polysaccharide extraction from Dioscorea nipponica Makino using response surface methodology and uniform design. , 2012, Carbohydrate polymers.
[31] Yimin Li,et al. Simulation of dynamic processes on flexible filamentous particles in the transverse section of a rotary dryer and its comparison with ideo-imaging experiments , 2011 .
[32] Madoc Sheehan,et al. Development of a geometric flight unloading model for flighted rotary dryers , 2010 .
[33] Yong Jin,et al. Granule transport and mean residence time in horizontal drum with inclined flights , 2006 .
[34] Christine M. Hrenya,et al. Comparison of soft-sphere models to measurements of collision properties during normal impacts , 2005 .
[35] P. Cundall,et al. A discrete numerical model for granular assemblies , 1979 .
[36] Marie Debacq,et al. Effect of lifter shape and operating parameters on the flow of materials in a pilot rotary kiln: Part II. Experimental hold-up and mean residence time modeling , 2015 .
[37] Marie Debacq,et al. Effect of lifter shape and operating parameters on the flow of materials in a pilot rotary kiln: Part I. Experimental RTD and axial dispersion study , 2015 .
[38] Wu Mou-cheng. Optimization of Extraction Process of Water-soluble Polysaccharides from Seeds of Pistacia chinensis Bung by Response Surface Methodology , 2008 .
[39] T. Swaminathan,et al. Statistical optimization of lipase catalyzed hydrolysis of methyloleate by response surface methodology , 2000 .