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[1]Multiple field synergy mechanism of the desulfurization process in the intensified spouted bedChemical Engineering Journal,2023,467(143521
[2]Numerical investigation on the water vaporization during semi dry flue gas desulfurization in a three-dimensional spouted bedPowder Technology, 383:471-483,2021,
[3]Numerical and experimental study of integral multi-jet structure impact on gas-solid flow in a 3D spout-fluidized bed.Chemical Engineering Journal, 393: 124737, 2020,
[4]Numerical simulation of semi-dry flue gas desulfurization process in the powder-particle spouted bed.Advanced Powder Technology, 31(1): 323-331,2020,
[5]Experimental investigation on hydrodynamic behavior in a spouted bed with longitudinal vortex generators.Advanced Powder Technology, 30(10): 2178-2187,2019.,
[6]Numerical analysis of gas-solid flow in a novel spouted bed structure under the longitudinal vortex effects.Chemical Engineering Journal, 334: 2105-2114, 2018.,
[7]Numerical simulation and optimization of hydrodynamics in a novel integral multi-jet spout-fluidized bed.Powder Technology, 336: 112-121, 2018.,
[8]Numerical simulation of gas-solid flow in a novel spouted bed: Influence of row number of longitudinal vortex generators.Advanced Powder Technology, 29 (8): 1848-1858,2018.,
[9]Influence of Longitudinal Vortex Generator Configuration on the Hydrodynamics in a Novel Spouted Bed.Chemical Engineering & Technology, 41(9): 1716-1726, 2018.,
[10]Buoyancy induced convection in a porous cavity with sinusoidally and partially thermally active sidewalls under local thermal non-equilibrium condition.International Communications in Heat and Mass Transfer, 75: 100-114, 2016.,
[11]Natural convection in a porous rectangular enclosure with sinusoidal temperature distributions on both side walls using a thermal non-equilibrium model.International Journal of Heat and Mass Transfer, 85: 756-771,2015.,
[12]Numerical analysis of natural convection in a porous cavity with sinusoidal thermal boundary condition using a thermal non-equilibrium model.Numerical Heat Transfer Part A-Applications,69(11): 12800-1296, 2016.,
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