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characteristics in continuously operated dense-phase fluidized beds.ChinJ Ciesc,2021,72(1):521 (兰斌,徐骥,刘志成,等.连续操作密相流化床颗粒停留时间分布特性模拟放大研究.化工学报,2021, 72(1):521) [20]Liu YL,Zhang P.Wei WL,et al.Three-dimensional numerical simulation of liquid-solid two-phase flow dynamics in radial flow sedimentation tanks.ChinJ Water Res Eng.2013,24(04):25 (刘玉玲,张沛,魏文礼,等.辐流式沉淀池液固两相流力学特性三维数值模拟.水资源与水工程学报, 2013,2404):25) [21]Yu Q,Mei Z,Bai M,et al.Cooling performance improvement of impingement hybrid synthetic jets in a confined space with the aid of a fluid diode.Appl Therm Eng.2019,157:113749 [22]Behrangi F,Banihashemi MA,Namin MM,et al.A new approach to solve mixture multi-phase flow model using time splitting projection method.Prog Comput Fluid Dyn.2019,19(3):160 [23]Hnaien N,Marzouk S,Aissia H B,et al.Numerical investigation of velocity ratic mbined wall and offset jet flows.J Hydro,2018,30:1105 [24]Siswantara A I.Budiarso,Darmawan S.Investigation of Inverse-Turbulent-Prandtl Number with Four RNG k-g Turbulence Models on Compressor Discharge Pipe of Bioenergy Micro Gas Turbine.Appl Mech Mater. 2016,819:392 [25]Tarpagkou R,Pantokratoras A.The influence of lamellar settler in sedimentation tanks for potable water treatment-A computational fluid dynamic study.Powder Technol,2014.268:139 [26]Tan L X,Tang M,Xu C H.Three-dimensional numerical simulation of the influence of inclined plates on vertical flow sedimentation tanks.J Hydroelec Eng,2018,37(10):86 (谭立新,唐敏,徐长贺.斜板对竖流式沉淀池影响的维 数值模拟.水力发电学报,2018.37(10):86) [27]Shahrokhi M,Rostami F,Said M,et al.The effect of number of baffles on the improvement efficiency of primary sedimentation tanks.Appl Math Model,2012,36(8):3725. [28]Goula A M,Kostoglou M,Karapantsios T D.et al.A CFD methodology for the design of sedimentation tanks in potable water treatment:Case study:The influence of a feed flow control baffle.Chem EngJ.2008.140(1 3:110 录用稿件characteristics in continuously operated dense-phase fluidized beds. Chin J Ciesc , 2021, 72(1): 521 (兰斌, 徐骥, 刘志成, 等. 连续操作密相流化床颗粒停留时间分布特性模拟放大研究. 化工学报, 2021, 72(1): 521) [20] Liu Y L, Zhang P, Wei W L, et al. Three-dimensional numerical simulation of liquid-solid two-phase flow dynamics in radial flow sedimentation tanks. Chin J Water Res Eng, 2013, 24(04): 25 (刘玉玲, 张沛, 魏文礼, 等. 辐流式沉淀池液固两相流力学特性三维数值模拟. 水资源与水工程学报, 2013, 24(04): 25) [21] Yu Q, Mei Z, Bai M, et al. Cooling performance improvement of impingement hybrid synthetic jets in a confined space with the aid of a fluid diode. Appl Therm Eng. 2019, 157: 113749 [22] Behrangi F, Banihashemi M A, Namin M M, et al. A new approach to solve mixture multi-phase flow model using time splitting projection method. Prog Comput Fluid Dyn. 2019, 19(3): 160 [23] Hnaien N, Marzouk S, Aissia H B, et al. Numerical investigation of velocity ratio effect in combined wall and offset jet flows. J Hydro, 2018, 30: 1105 [24] Siswantara A I, Budiarso, Darmawan S. Investigation of Inverse-Turbulent-Prandtl Number with Four RNG k-ε Turbulence Models on Compressor Discharge Pipe of Bioenergy Micro Gas Turbine. Appl Mech Mater. 2016, 819: 392 [25] Tarpagkou R, Pantokratoras A. The influence of lamellar settler in sedimentation tanks for potable water treatment — A computational fluid dynamic study. Powder Technol, 2014, 268: 139 [26] Tan L X, Tang M, Xu C H. Three-dimensional numerical simulation of the influence of inclined plates on vertical flow sedimentation tanks. J Hydroelec Eng, 2018, 37(10): 86 (谭立新, 唐敏, 徐长贺. 斜板对竖流式沉淀池影响的三维数值模拟. 水力发电学报, 2018, 37(10): 86) [27] Shahrokhi M, Rostami F, Said M, et al. The effect of number of baffles on the improvement efficiency of primary sedimentation tanks. Appl Math Model, 2012, 36(8): 3725. [28] Goula A M, Kostoglou M, Karapantsios T D, et al. A CFD methodology for the design of sedimentation tanks in potable water treatment: Case study: The influence of a feed flow control baffle. Chem Eng J, 2008, 140(1- 3):110 录用稿件,非最终出版稿
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