部分论文


2019

1.      Xia, Y., Yu, Z., & Deng, J. (2019) A fictitious domain method for particulate flows of arbitrary density ratio. Computers & Fluids, 193, 10429

2.      Wang, Y., Yu, Z., & Lin, J. (2019) Numerical simulations of the motion of ellipsoids in planar Couette flow of Giesekus viscoelastic fluids. Microfluidics and Nanofluidics, 23(7), 89.

3.      Yu, Z., Wang, P., Lin, J., & Hu, H. H. (2019). Equilibrium positions of the elasto-inertial particle migration in rectangular channel flow of Oldroyd-B viscoelastic fluids. Journal of Fluid Mechanics, 868, 316-340.

4.      Yu, Z., Zhu, C., Wang Y., & Shao X. (2019) Effects of finite-size neutrally buoyant particles on the turbulent channel flow at a Reynolds number of 395. Applied Mathematics and Mechanics, 40(2), 293-304.

5.      Lin, Z., Hess, A., Yu, Z., Cai, S., & Gao, T. (2019). A fluid–structure interaction study of soft robotic swimmer using a fictitious domain/active-strain method. Journal of Computational Physics, 376, 1138-1155.

6.      Xiong, H. B., Zhang, C. Y., & Yu, Z. S. (2019). Multiphase SPH modeling of water boiling on hydrophilic and hydrophobic surfaces. International Journal of Heat and Mass Transfer, 130, 680-692.

7.      Hanqing Li, Bonan Xu, Hanhui Jin*, Kun Luo, Jianren Fan, Molecular dynamics investigation on the lignin gasification in supercritical water, 2019, Fuel Processing Technology, Vol. 192, 203- 209.

8.      Yanqi Zhu, Yong Chen, Zihan Xu, Hanhui Jin*, Jianren Fan, Numerical simulation of gas-particle dense flow with LES/VFDF/SC model, 2019, Computers & Fluids, Vol. 183, 43-52.

9.      Xu Wen, YujuanLuo, Haiou Wang, Kun Luo*, Hanhui Jin, Jianren Fan, A three mixture fraction flamelet model for multi-stream laminar pulverized coal combustion, 2019, Proceedings of the Combustion Institute, Vol. 37(3):2901-2910.

10.   Su, Y., Tian, Q., Pan, D., Hui, L., Chen, Y., Zhang, Q., ... & Wang, B. (2019). Antibody-Functional Microsphere-Integrated Filter Chip with Inertial Microflow for Size–Immune-Capturing and Digital Detection of Circulating Tumor Cells. ACS Applied Materials & Interfaces, 11(33), 29569-29578.

11.   Zeng, L., Pan, D., Ye, S., & Shao, X. (2019). A fast multiobjective optimization approach to S-duct scoop inlets design with both inflow and outflow. Proceedings of the Institution of Mechanical Engineers, Part G: Journal of Aerospace Engineering, 233(9), 3381-3394.

12.   Ye, T., Pan, D., Huang, C., & Liu, M. (2019). Smoothed particle hydrodynamics (SPH) for complex fluid flows: Recent developments in methodology and applications. Physics of Fluids, 31(1), 011301.

13.   Li, Y., Pan, D., Ma, Z., & Zhao, Q. (2019). Aspect Ratio Effect of a Pair of Flapping Wings on the Propulsion of a Bionic Autonomous Underwater Glider. Journal of Bionic Engineering, 16(1), 145-15.

14.   Hydrodynamic interaction between a pair of swimmers in power-law fluid, OuyangZhenyu, Lin Jianzhong*, Ku Xiaoke, International Journal of Non-linear Mechanics, 2019, Vol.108, P72-80(SCI收录).

15.   “Flow of power-law fluid past a circular cylinder in the vicinity of a moving wall ”, Zhang Peijie, Lin Jianzhong*, Ku Xiaoke, Journal of the Brazilian Society of Mechanical Sciences and Engineering, 2019, Vol.41, No.1, DOI: 10.1007/s40430-018-1554-1 (SCI收录)

16.   Lin, X., Bao, F., Tu, C., Yin, Z., Gao, X., & Lin, J. (2019). Dynamics of bubble formation in highly viscous liquid in co-flowing microfluidic device. Microfluidics and Nanofluidics, 23(5), 74.

17.   Nanofluidics and Nanofluids, Lin Jianzhong*, Yu Mingzhou, Seipenbusch Martin, Ku Xiaoke, Feng Yu, Journal of Nanotechnology, 2019, Vol. 2019, ID 8767624, https://doi.org/10.1155/2019/8767624. (ESCI收录)

18.   Mixture flow of particles and power-law fluid in round peristaltic tube, Yang Hailin, Lin Jianzhong*, Ku Xiaoke, Applied Mathematics and Mechanics2019, Vol. 40, No.6, P805-822. (SCI收录)

19.   Discontinuity in the sedimentation system with two particles having different density in a vertical channel, Nie Deming, Lin Jianzhong*, Physical Review E, 2019, Vol.99, No.5, DOI: 10.1103/PhysRevE.99.053112 (SCI收录)TOP期刊

20.   Inertial migration of circular particles in Poiseuille of power-law fluid, Hu Xiao, Lin Jianzhong*, Ku Xiaoke, Physics of Fluids, 2019, Vol.31, 073306. doi: 10.1063/1.5108797. (SCI收录) TOP期刊

21.   Numerical study on fractal-like soot aggregate dynamics of turbulent ethylene-oxygen flame, Liu Shuyuan, Chan Tat Leung, Lin Jianzhong, Yu Mingzhou, Fuel, 2019, Vol.256, 115857 (SCI收录) TOP期刊

22.   A review on the flow instability of nanofluids, Lin Jianzhong*, Yang Hailin, Applied Mathematics and Mechanics, 2019, Vol. 40, No.9, P12271238. (SCI收录)

23.   Migration of spherical particles in a confined shear flow of Giesekus fluid”,Liu Bingrui, Lin Jianzhong, Ku Xiaoke, Yu Zhansheng, RheologicaActa, 2019, Vol.58, P639646. (SCI收录)

24.   Wang, S., Guo, H., Li, Y. F., & Li, X. J. (2019). Penetration of nanoparticles across a lipid bilayer: Effects of particle stiffness and surface hydrophobicity. Nanoscale, 11, 4025-4034.

25.    Deng, Y. X., Papageorgiou, D. P., Chang, H.-Y., Abidi, S. Z., Li, X. J., Dao, M., &Karniadakis, G. E. (2019). Quantifying shear-induced deformation and detachment of individual adherent sickle red blood cells. Biophysical Journal, 116, 360-371.

26.   Cai, S., Liang, J., Gao, Q., Xu, C., Wei, R., 2019. Particle image velocimetry based on a deep learning motion estimator. IEEE Transactions on Instrumentation & Measurement, doi: 10.1109/TIM.2019.2932649.

27.   Wang, C., Gao, Q., Wang, J., Wang, B., & Pan, C., 2019. Experimental study on dominant vortex structures in near-wall region of turbulent boundary layer based on tomographic particle image velocimetry. Journal of Fluid Mechanics, 874, 426-454.

28.   Cai, S., Zhou, S., Xu, C., Gao, Q., 2019. Dense motion estimation of particle images via a convolutional neural network. Experiments in Fluids, 60: 73.

29.   Wu, P., Gao, Q. and Hsu, PL., 2019. On the representation of effective stress for computing hemolysis, Biomech Model Mechanobiol (2019) 18: 665.

30.   Deng, J., Zhang L. X., Liu, Z. Y., Mao, X. (2019) Numerical prediction of aerodynamic performance for a flying fish during gliding flight. Bioinspiration&Biomimetics, 14, 046009.

31.    Xie, F. F., Zheng, H., Deng, J*., Zheng, Y. (2019) Vortex induced vibration of a circular cylinder with a filament by using penalty immersed boundary method. Ocean Engineering, 186, 106078.

32.    Deng, J., Sun, L., Shao, X. (2019) Wake dynamics of low-Reynolds number flow around a two-dimensional airfoil. Physics of Fluids, 31, 024102.

33.   Deng, J., Mao, X., Xie, F. (2019) Dynamics of two-dimensional flow around a circular cylinder with flexible filaments attached. Physical Review E, 100, 053107.

34.    V. Vasudev, X. Ku, J. Lin, 2019. Kinetic study and pyrolysis characteristics of algal and lignocellulosic biomasses. Bioresource technology, 288: 121496.

35.   X. Ku, J. Wang, H. Jin, J. Lin, 2019. Effects of operating conditions and reactor structure on biomass entrained-flow gasification. Renewable energy, 139: 781-795.

36.  X. Ku, F. Shen, H. Jin, J. Lin, H. Li, 2019. Simulation of biomass pyrolysis in a fluidized bed reactor using thermally thick treatment. Industrial & Engineering Chemistry Research, 58(4): 1720-1731.

37.   T. Chen, X. Ku, J. Lin, H. Jin, 2019. Modelling the combustion of thermally thick biomass particles. Powder Technology, 353: 110-124.

38.   X. Ku, H. Li, J. Lin, H. Jin, 2019. Accumulation of heavy particles in circular bounded vortex flows induced by two small rotating cylinders. International Journal of Multiphase Flow, 113: 71-88.

39.   Jiecheng Yang, Liliana Bello, Kevin Buettner, Yu Guo, Carl Wassgren, Jennifer S Curtis. Breakage of wet flexible fiber agglomerates impacting a plane. AIChE Journal. V. 65, e16626 , 2019, https://doi.org/10.1002/aic.16626.

40.   K.E. Buettner, Y. Guo, J.S. Curtis. Some considerations for measuring the collisional dissipation rate of flexible fibers, Powder Technology 2019, 360-366.

41.   Henna Tangri, Yu Guo, Jennifer S. Curtis. Hopper discharge of elongated particles of varying aspect ratio: Experiments and DEM simulations. Chemical Engineering Science: X, Volume 4, 2019, 100040.

42.   Jiecheng Yang, Yu Guo, Kevin E Buettner, Jennifer S Curtis. DEM investigation of shear flows of binary mixtures of non-spherical particles. Chemical Engineering Science, 2019, 202, 383-391.

43.   Y. Guo, C. Pei, A. Krok, L. Zhang, C.Y. Wu, M. A. Behjani and A. Hassanpour. Chapter 5: Modelling of Powder Flow. Powder Flow: Theory, Characterisation and Application. Edited by Ali Hassanpour, Colin Hare and Massih Pasha. Published by Royal Society of Chemistry. 2019. pp. 147-176. (英文书章)

44.   Zhang, L.X., Zhang, J., Deng, J. (2019). Numerical investigation on the collapse of a bubble cluster near a solid wall. Physical Review E, 99(4):043108.

45.   Zhang, J., Zhang, L.X., Deng, J. (2019). Numerical study of the collapse of multiple bubbles and the energy conversion during bubble collapse. Water, 11(2):247.

46.   Zhang, L.X., Chen, M., Deng, J., Shao, X.M. (2019). Experimental and numerical studies on cavitation over flat hydrofoils with and without obstacle. Journal of Hydrodynamics, 31(4):708-716.

47.   Chen, X.S., Shao, X.M., Zhang, L.X. (2019). The characteristics of unsteady cavitation around a sphere. Physics of Fluids, 31(4):042103.

48.   Chen, L.Y., Zhang, L.X., Peng, X.X., Shao, X.M. (2019). Influence of water quality on the tip vortex cavitation inception. Physics of Fluids, 31(2):023303.

49.   S. Zhang, Z. Xia*, Y. Shi and S. Chen*, 'A two-dimensional-three-component model for spanwise rotating plane Poiseuille flow', J. Fluid Mech., vol. 880:478-496, 2019. (SCI)

50.   Z. Xia*, Y. Shi, M. Wan, C. Sun, Q. Cai and S. Chen*, 'Role of the large-scale structures in spanwise rotating plane Couette flow with multiple states',Phys. Rev. Fluids, vol. 4: 104606, 2019. (SCI)

51.   Y. Huang, Z. Xia*, M. Wan, Y. Shi and S. Chen*, 'Hysteresis behavior in spanwise rotating plane Couette flow with varying rotation rates', Phys. Rev. Fluids, vol. 4: 052401(R), 2019. (SCI)

52.   Z. Xia, 'Multiple states in turbulence'(In Chinese). Chin. Sci. Bull., vol. 64: 373-383, 2019. (EI)

53.   Z. Yang, L.H. Chen*, Y. Li, Z. Xia and C.X. Wang, 'Numerical investigation of heat transfer characteristics in a shell-and-tube latent heat thermal energy storage system', Eng. Proc., vol.160:475-482, 2019.  (EI)

54.   Z. Xia*, Y. Shi, Q. Cai and J. Gai, 'Dissipation function in turbulent plane Poiseuille and Couette flows subject to spanwise rotations', Appl. Math. Mech.-Engl. Ed., vol. 40(2):185-192, 2019. (SCI)

55.   P. Zhang, Z. Xia and Q. Cai*, 'Direct Numerical Simulation of a Freely Falling Thick Disk', Adv. Appl. Math. Mech., vol. 11(3):608-618, 2019. (SCI)

56.   L. Li, Y. Shi, S. Zhang, L.-P. Wang and Z. Xia*, 'On the Comparison Between Lattice Boltzmann Methods and Spectral Methods for DNS of Incompressible Turbulent Channel Flows on Small Domain Size', Adv. Appl. Math. Mech., vol. 11(3):598-607, 2019. (SCI)

57.   Bai, X.; Xu, L.; Tang, J.; Zuo, Y. & Hu, G. Adsorption of phospholipids at the air-water surface. Biophysical Journal, 117, 1224-1233 (2019)

58.   Chen, X.; Xue, C. & Hu, G. Confinements regulate capillary instabilities of fluid threads. Journal of Fluid Mechanics, 873, 816-834 (2019)

 

2018

1.      Zhu, C., Yu, Z., Shao, X., 2018. Interface-resolved direct numerical simulations of the interactions between neutrally buoyant spheroidal particles and turbulent channel flows. Physics of Fluids, 30(11), 115103. SCI

2.      Wang, P., Yu, Z., Lin, J., 2018. Numerical simulations of particle migration in rectangular channel flow of Giesekus viscoelastic fluids. Journal of Non-Newtonian Fluid Mechanics 262, 142–148 SCI

3.      Wang, G., Abbas, M., Yu, Z., Pedrono, A., Climent, E., 2018. Transport of finite-size particles in a turbulent Couette flow: the effect of particle shape and inertia. International Journal of Multiphase Flow 107,168–181.SCI

4.      Wang, H. P., Gao, Q., Wang, S. Z., Li, Y. H., Wang, Z. Y., Wang, J. J., 2018. Error reduction for time-resolved PIV data based on Navier–Stokes equations. Experiments in Fluids, 59: 149. SCI

5.      Chen, T., Ku, X., Lin, J., Fan, L., 2018. New Pyrolysis Model for Biomass.Particles in a Thermally Thick Regime. Energy & Fuels, 32(9), 9399-9414. (SCI)

6.      Ku, X., Li, H., Lin, J., Jin, H., Shen, F., 2018. Accumulation of heavy particles in a circular bounded vortex flow: Parameter influence and comparison. International Journal of Multiphase Flow, 103, 124-140. (SCI)

7.      D Pan, G Zhao, Y Lin, X Shao, 2018. Mesoscopicmodelling of microbubble in liquid with finite density ratio of gas to liquid. EPL (Europhysics Letters) 122 (2), 20003.SCI

8.      Y Li, D Pan, Q Zhao, Z Ma, X Wang, 2018. Hydrodynamic performance of an autonomous underwater glider with a pair of bioinspired hydro wings–A numerical investigation. Ocean Engineering 163, 51-57.SCI

9.      Zhang LX., Chen M., Shao XM., 2018, Inhibition of cloud cavitation on a flat hydrofoil through the placement of an obstacle, Ocean Engineering, 155:1-9.SCI

10.   彭凯,陈闰路,邵雪明,张凌新, 2018, 轴流泵顶隙涡的数值模拟研究,水动力学研究与进展,33(6):143-146.

11.   Lin Jianzhong*, Wang Yelong, Zhang Peijie, Ku Xiaoke, “Mixing and orientation behaviors of cylindrical particles in a mixing layer of an Oldroyd-B fluid”, Chemical Engineering Science, 2018, 176, P270–284. SCI

12.   Wang Yelong, Lin Jianzhong*, Zhang Peijie, “Vortex behavior of particle suspension flow in a wedge for the second-order fluid”, Journal of the Brazilian Society of Mechanical Sciences and Engineering, 2018, Vol.40, No.1, UNSP 16, DOI: 10.1007/s40430-017-0944-0. SCI

13.   Yuan Fangyang, Lin Jianzhong*, Ku Xiaoke, “Convective heat transfer and resistance characteristics of nanofluids with cylindrical particles”, Heat Transfer Engineering, 2018, Vol.39, No.6, P526-535.SCI

14.   OuyangZhenyu, Lin Jianzhong*, Wang Yelong, Yuan Fangyang, “Fiber orientation distribution and rheological properties of fiber suspension in a turbulent jet”, Korea-Australia Rheology Journal, 2018, Vol.30, No.1, P55-63. SCI

15.   Yuan Fangyang, Lin Jianzhong*, Yu Jianfeng, “Numerical research on convective heat transfer and resistance characteristics of turbulent duct flow containing nanorod based nanofluids”, Journal of Nanotechnology, 2018, Vol. (2018), ID 4349572, P1-9. ESCI

16.   Lin Jianjzhong*, OuyangZhenyu, Ku Xiaoke, “Dynamics of cylindrical particles in the contraction flow of a second-order fluid”, Journal of Non-Newtonian Fluid Mechanics, 2018, Vol.257, P1-12. SCI

17.   Xia yi, Lin Jianzhong*, Ku Xiaoke, Chan Tatleung Chan, “Shear-induced autorotation of freely rotatable cylinder in a channel flow at moderate Reynolds number”, Physics of Fluids, 2018, Vol.30, No.4, 043303, DOI: 10.1063/1.5021877. SCI

18.   QianLijuan, Song Shaobo, Jiang Lisha, Li Xiaolu, Lin Jianzhong*, “A comparative study on the breakup of Newtonian and viscoelastic liquid films”, Modern Physics Letters B, 2018, Vol.32, No.12&13, 1840032-1-6. SCI

19.   Xia Yi, Zhang Peijie, Lin Jianzhong*, Ku Xiaoke, Nie Deming, “Lattice boltzmann simulation of viscoealstic flow past a confined free rotating cylinder”, Modern Physics Letters B, 2018, Vol.32, No.12&13, 1840023-1-6. SCI

20.   Zhang Peijie, Lin Jianzhong, Ku Xiaoke, “A new weight factor for Brownian force exerted on micro/nano-particles in air flow”, Modern Physics Letters B, 2018, Vol.32, No.12&13, 1840016-1-5. SCI

21.   Yu Mingzhou, Lin Jianzhong*, “Taylor series expansion scheme applied for solving population balance equation”, Reviews in Chemical Engineering, 2018, Vol.34, No.4, P561-594. SCI

22.   Xia Yi, Lin Jianzhong*, Ku Xiaoke, “Flow-induced rotation of circular cylinder in Poiseuille flow of power-law fluids”, Journal of Non-newtonian Fluid Mechanics, 2018, Vol.260, P120-132. SCI

23.   OuyangZhenyu, Lin Jianzhong*, Ku Xiaoke, “The hydrodynamic behavior of  a asquirmer swimming in power-law fluids”, Physics of Fluids, 2018, Vol.30, 083301-1-14 SCI

24.   Jiang Renjie, Lin Jianzhong*, TuChengxu, “Poiseuille flow-induced vibrations of a cylinder in subcritical conditions”, Journal of Fluids and Structures, 2018, Vol.82, P272-286. SCI

25.   OuyangZhenyu, Lin Jianzhong*, Ku Xiaoke, Hydrodynamic properties of squirmer swimming in the power-law fluid near a wall”,RheologicaActa, 2018, Vol.57, No.10, P655-671. SCI

26.   Chen, L. P., Li, X. J., Zhang, Y., Chen, T., He, M., Yin, X., Xiao, S. Y., Liang, H. J, 2018. Morphological and mechanical determinants of cellular uptake of deformable nanoparticles. Nanoscale 10, 11969-11979. SCI

27.   Hanhui Jin*, Bonan Xu, Hanqing Li, Xiaoke Ku, Jianren Fan,Numerical investigation of coal gasification in supercritical water with the ReaxFF molecular dynamics method, 2018, International Journal of Hydrogen Energy, Vol. 43(45): 20513-20524. SCI

28.  P. Zhang, Z. Xia* and Q. Cai, Numerical simulation of h-adaptive immersed boundary method for freely falling disks, Mod. Phys. Lett. B, vol. 32:1840002, 2018. DOI:10.1142/S021798491840002X. SCI

29.   Z. Jiang*, Z. Xia*, Y. Shi and S. Chen, Large eddy simulation of spanwiserotating turbulent channel flow with dynamic variants of eddy viscosity model, Phys. Fluids, vol. 30:040909, 2018. DOI: 10.1063/1.5011236. SCI

30.   Z. Xia*, G. Brethouwer and S. Chen, High-order moments of streamwise fluctuations in a turbulent channel flow with spanwise rotation, Phys. Rev. Fluids, vol. 3:022601(R), 2018. DOI:10.1103/PhysRevFluids.3.022601.SCI

31.   Z. Xia*,Y. Shi, Q. Cai, M. Wan and S. Chen*, Multiple states in turbulent plane Couette flow with spanwise rotation, J. Fluid Mech., vol.837:477-490, 2018. DOI:10.1017/jfm.2017.869. SCI

32.   P. Zhang, Z. Xia* and Q. Cai*, An h-adaptive implicit immersed boundary-lattice Boltzmann flux solver based on JASMIN AMR package, Comput. &Fluids, vol. 161:14-22, 2018. DOI:10.1016/j.compfluid.2017.11.003.SCI

33.   S. Hu, C. Zhou*,Z. Xia and S. Chen, Large Eddy Simulation and CDNS  Investigation of T106C Low-Pressure Turbine, J. Fluid Eng.,vol. 140,  p. 011108, 2018. DOI:10.1115/1.4037489.SCI

34.   Deng, J., Caulfield, C., 2018. Horizontal locomotion of a vertically flapping oblate spheroid. Journal of Fluid Mechanics 840, 688-708.SCI

35.   Sun, L., Deng, J., Shao X., 2018. Three-dimensional instabilities for the flow around a heaving foil. Physical Review E 97(1), 013110.SCI

36.   Xie, F., Deng, J., 2018. A further study of inverted hydrodynamic drafting for flow past two flexible filaments in tandem arrangement. Progress in Computational Fluid Dynamics, an International Journal 18(3): 164-176.SCIE

37.   Y. Guo, C. Wassgren, J.S. Curtis, D.D. Xu. A bonded sphero-cylinder model for the discrete element simulation of elasto-plastic fibers. Chemical Engineering Science, 2018, 175:118-129.SCI

38.   Y. Guo, C. Wassgren, W. Ketterhagen, B. Hancock, J. Curtis. Discrete element simulation studies of angles of repose and shear flow of wet, flexible fibers. Soft Matter, 2018, 14, 2923-2937.SCI

39.   Y. Guo, K. Buettner, G. Lane, C. Wassgren, W. Ketterhagen, B. Hancock, J. Curtis. Computational and Experimental Studies of Flexible Fiber Flows in a NormalStressFixed Shear Cell. AIChE Journal, 2018, doi.org/10.1002/aic.16397. SCI

40.   J. Cai, J. Yang, Y. Guo, C.Y. Wu, X. Zhao. Mechanistic Analysis of Solid-liquid Flow during Injection. Particuology, 2018, https://doi.org/10.1016/j.partic.2018.05.008. SCIE

 

2017

1.      Yu, M., Lin, J., Seipenbusch, M., & Cao, J. (2017). Verification of size-resolved population balance modeling for engineered nanoparticles under high concentration. Chemical Engineering Journal, 323, 592-604.SCI

2.      Yu, M., & Lin, J. (2017). Hybrid method of moments with interpolation closure–Taylor-series expansion method of moments scheme for solving the Smoluchowski coagulation equation. Applied Mathematical Modelling, 52, 94-106.SCIE

3.      Nie, D., Lin, J., &Gao, Q. (2017). Settling behavior of two particles with different densities in a vertical channel. Computers & Fluids, 156, 353-367.SCI

4.      Yu, M., & Lin, J. (2017). New scheme for implementing the method of moments with interpolative closure. Aerosol Science and Technology, 51(8), 956-971.SCI

5.      Ouyang, Z., Lin, J. Z., & Ku, X. (2017). Hydrodynamic interactions between a self-rotation rotator and passive particles. Physics of Fluids, 29(10), 103301.SCI

6.      Ouyang, Z., Lin, J., & Ku, X. (2017). Dynamics of a self-propelled particle under different driving modes in a channel flow. Chinese Physics B, 26(1), 014701.SCI

7.      Tu, C., Lin, J., Yin, Z., Bao, F., & Du, P. (2017). Powder disperser for the continuous aerosolizing of dry powdered nanoparticles. Advanced Powder Technology, 28(11), 2848-2858.SCIE

8.      Tu, C., Yin, Z., Lin, J., &Bao, F. (2017). A Review of Experimental Techniques for Measuring Micro-to Nano-Particle-Laden Gas Flows. Applied Sciences, 7(2), 120. SCI

9.      Lin, Z., Yu, Z., Shao, X., & Wang, L. P. (2017). Effects of finite-size neutrally buoyant particles on the turbulent flows in a square duct. Physics of Fluids, 29(10), 103304. SCI

10.   Yu, Z., Lin, Z., Shao, X., & Wang, L. P. (2017). Effects of particle-fluid density ratio on the interactions between the turbulent channel flow and finite-size particles. Physical Review E, 96(3), 033102. SCI

11.   Sun, J., Yu, Z., & Ye, S. (2017). Hydrodynamics characterization of a choanoid fluidized bed bioreactor used in the bioartificial liver system: Fully resolved simulation with a fictitious domain method. Particuology, 32, 39-48. SCIE

12.   Lin, Z. W., Shao, X. M., Yu, Z. S., & Wang, L. P. (2017). Effects of finite-size heavy particles on the turbulent flows in a square duct. Journal of Hydrodynamics, Ser. B, 29(2), 272-282. SCIE

13.   Deng, J., Sun, L., & Shao, X. (2017). Floquet stability analysis in the wake of a NACA0015 airfoil at post-stall angles of attack. Physics of Fluids, 29(9), 094104.

14.   Deng, J., Xue, J., Mao, X., & Caulfield, C. C. P. (2017). Coherent structures in interacting vortex rings. Physical Review Fluids, 2(2), 022701. SCI

15.   Ku, X., Jin, H., & Lin, J. (2017). Comparison of gasification performances between raw and torrefied biomasses in an air-blown fluidized-bed gasifier. Chemical Engineering Science, 168, 235-249. SCI

16.   Yuan, F., Lin, J., & Ku, X. (2017). Convective heat transfer and resistance characteristics of nanofluids with cylindrical particles. Heat Transfer Engineering, 1-10. SCI

17.   Li, T., Ku, X., & Løvås, T. (2017). CFD simulation of devolatilization of biomass with shrinkage effect. Energy Procedia, 105, 505-510.

18.   Jin, H., Liu, N., Ku, X., & Fan, J. (2017). A novel energy conversion based method for velocity correction in molecular dynamics simulations. Journal of Computational Physics, 336, 569-579. SCI

19.   Jin, H., Liu, N., Ku, X., & Fan, J. (2017). Preferential frequency and size effect of the Brownian force acting on a nanoparticle. Journal of Fluid Mechanics, 828, 648-660. SCI

20.   Wen, X., Luo, K., Jin, H., & Fan, J. (2017). Numerical investigation of coal flamelet characteristics in a laminar counterflow with detailed chemistry. Fuel, 195, 232-242. SCI

21.   Wen, X., Luo, K., Jin, H., & Fan, J. (2017). Large eddy simulation of piloted pulverised coal combustion using extended flamelet/progress variable model. Combustion Theory and Modelling, 21(5), 925-953. SCI

22.   Wen, X., Luo, Y., Luo, K., Jin, H., & Fan, J. (2017). LES of pulverized coal combustion with a multi-regime flamelet model. Fuel, 188, 661-671. SCI

23.   Lin, Y., Pan, D., Li, J., Zhang, L., & Shao, X. (2017). Application of Berendsenbarostat in dissipative particle dynamics for nonequilibrium dynamic simulation. Journal of Chemical Physics, 146(12), 124108. SCI

24.   Xie, F., Pan, D., Zheng, Y., &Zou, J. (2017). Smoothed profile method and its applications in viv. International Journal of Numerical Methods for Heat & Fluid Flow, 27(6), 1623-1635. SCI

25.   Xiong, H., & Sun, W. (2017). Investigation of droplet atomization and evaporation in solution precursor plasma spray coating. Coatings, 7(12), 207. SCIE

26.   陆夕云, &林建忠. (2017). 能否发展关于湍流动力学和颗粒材料运动学的综合理论?. 科学通报, 62(11), 1115-1118.

27.   张培杰, &林建忠. (2017). 非牛顿流体固粒悬浮流的若干问题力学学报, 49(3), 543-549.

28.   Zhang LX., Chen LY., Peng XX., Shao XM., 2017, The effect of water quality on tip vortex cavitation inception, Journal of Hydrodynamics, 29(6):954-961. SCIE

29.   Hanhui Jin, Ningning Liu, Xiaoke Ku*, Jianren Fan, Preferential frequency and size effect of the Brownian force acting on a nanoparticle, 2017, Journal Fluid Mechanics, vol. 828, 648-660. (IF=2.821) SCI

30.   Xiaoke, Ku, Hanhui Jin,  Jianzhong Lin* Comparison of gasification performances between raw and torrefied biomasses in an air-blown fluidized-bed gasifier, 2017, Chemical Engineering Science,  Vol. 168, 235-249 IF=2.895SCI

31.   Hanhui Jin, Ningning Liu, Xiaoke Ku*, Jianren Fan, A novel energy conversion based method for velocity correction in molecular dynamics simulations, 2017, Journal of computational physics,Vol. 336, 569579 IF=2.746SCI

32.   Xu Wen, Kun Luo, Hanhui Jin, Jianren Fan, Numerical investigation of coal flamelet characteristics in a laminar counterflow with detailed chemistry, 2017, Fuel, Vol. 195, 232-242 IF=4.601SCI

33.   Xu Wen, YujuanLuo, Kun Luo, Hanhui Jin, Jianren Fan, LES of pulverized coal combustion with a multi-regime flamelet model, 2017, Fuel, Vol. 188, 661-671 IF=4.601SCI

34.   Xu Wen, Kun Luo, Hanhui Jin, Jianren Fan, Large eddy simulation of piloted pulverised coal combustion using extended flamelet/progress variable model, 2017, Combustion Theory and Modelling, Vol. 21(5), 925-953 SCI

35.   K. Buettner, Y. Guo, J.S. Curtis. Using the discrete element method to develop collisional dissipation rate models that incorporate particle shape. AICHE Journal, 2017, 63: 5384-5395. SCI

 

2016

1.      Xueming Shao, Xiaolong Zhang, Zhaosheng Yu #, Jianzong Lin, Numerical studies on the dynamics of an open triangle in a vertically oscillatory flow, Journal of Fluid Mechanics 788 (2016), 381-406.

2.      Zhaosheng Yu, Zhaowu Lin, Xueming Shao #, Lian-Ping Wang, A parallel fictitious domain method for the interface-resolved simulation of particle-laden flows and its application to the turbulent channel flow, Engineering Applications of Computational Fluid Mechanics 10 ( 2016), 160-170.

3.      Lian-Ping Wang #, Cheng Peng, Zhaoli Guo, Zhaosheng Yu, Flow modulation by finite-size neutrally buoyant particles in a turbulent channel flow, Journal of Fluids Engineering 138 (2016), 041306.

4.      Lian-Ping Wang #, Cheng Peng, Zhaoli Guo, Zhaosheng Yu, Lattice Boltzmann simulation of particle-laden turbulent channel flow, Computers & Fluids 124 (2016) 124: 226-236.

5.      Xue-ming SHAO, Xiao-long ZHANG, Zhao-sheng YU #. Numerical studies of the hysteresis in locomotion of a passively pitching foil[J]. Journal of Hydrodynamics Ser B (2016), 28(3):359-368.

6.      Y. Li, D. Pan#, Z. Ma, The mechanism of flapping propulsion of an underwater glider, Journal of Hydrodynamics, 28(5), 918-921 (2016).

7.      J. Deng, L. Sun, L. Teng, D. Pan#, X. Shao, The correlation between wake transition and propulsive efficiency of a flapping foil: a numerical study, Physics of Fluids, 28(9), 094101, (2016).

8.     D. Pan, Y. Lin, L. Zhang, X. Shao#, Motion and deformation of immiscible droplet in plane Poiseuille flow at low Reynolds number, Journal of Hydrodynamics, 28(4), 702-708 (2016).

9.     D. Pan, J. Deng. X. Shao, Z. Liu#, On the propulsive performance of tandem flapping wings with a modified immersed boundary method, International Journal of Computational Methods, 13(5), 1650025 (2016).

10.   D. Pan#, J. Hu#, X. Shao, Lees-Edwards boundary condition for simulation of polymer suspension with dissipative particle dynamics method, Molecular Simulation, 42(4), 328-336 (2016).

11.   L. Teng*, J. Deng#, D. Pan, X. Shao, Effects of non-sinusoidal pitching motion on a semi-active flapping foil energy harvester, Renewable Energy, 85, 810-818 (2016).

12.   Xiaoke Ku, Jianzhong Lin#, Fangyang Yuan, 2016. Influence of torrefaction on biomass gasification performance in a high-temperature entrained-flow reactor. Energy & Fuels, 30: 4053-4064.

13.   Xiaoke Ku, Jianzhong Lin#, Martin van Sint Annaland, Rob Hagmeijer, 2016. Numerical simulation of the accumulation of heavy particles in a circular bounded vortex flow. International Journal of Multiphase Flow, 87: 80-89.

14.   Jian Deng #, LubaoTeng, CP Caulfield, Xuerui Mao, Instabilities of interacting vortex rings generated by an oscillating disk, Physical Review E (2016), 94 (3), 033107

15.   Jian Deng, Liping Sun, LubaoTeng, Dingyi Pan #, Xueming Shao, The correlation between wake transition and propulsive efficiency of a flapping foil: A numerical study, Physics of Fluids (2016), 28 (9), 094101

16.   LubaoTeng, Jian Deng #, Dingyi Pan, Xueming Shao, Effects of non-sinusoidal pitching motion on energy extraction performance of a semi-active flapping foil, Renewable Energy (2016), 85, 810-818

17.   Jian Deng, CP Caulfield #, Dependence on aspect ratio of symmetry breaking for oscillating foils: implications for flapping flight, Journal of Fluid Mechanics (2016), 787, 16-49

18.   Xu Wen, Kun Luo, YujuanLuo, Hassan Kassem, Hanhui Jin, Jianren Fan, Large eddy simulation of a semi-industrial scale coal furnace using non-adiabatic three-stream flameletiprogress variable model, 2016, Applied energy, Vol. 183, 1086-1097 IF=7.182

19.   Mingzhou Yu, Yueyan  Liu, Guodong  Jin, Hanhui#, A new analytical solution for agglomerate growth undergoing Brownian coagulation, 2016, Applied mathematical modeling,  409-10):5497-5509IF=2.291

20.   Lin Jianzhong#, Xia Yi, Ku Xiaoke, “Flow and heat transfer characteristics of nanofluids containing rod-like particles in a turbulent pipe flow”, International Journal of Heat and Mass Transfer, 2016, Vol.93, No.1, P 57–66.

21.   Nie Deming, Lin Jianzhong#; ChenRongqian, “Grouping behavior of coaxial settling particles in a narrow channel”, Physical Review E, 2016, Vol.93, No.1, 013114.

22.   Jiang Renjie, Lin Jianzhong#, “Poiseuille flow-induced vibrations of two tandem circular cylinders with different mass ratios”, Physics of Fluids, 2016, Vol.28, No.6, 064105.

23.   Lin Jianzhong#, Pan Xiaojun,Yin Zhaoqin, Ku Xiaoke, “Solution of general dynamic equation for nanoparticles in turbulent flow considering fluctuating coagulation”, Applied Mathematics and Mechanics (English Edition), 2016, Vol.37, No.10, P1275-1288.

24.   Lin Jianzhong#, Yu Mingzhou, Nie Deming, “On the nanoparticulate flow”, Journal of Hydrodynamics, 2016, Vol.28, No.6, P961-970.

25.   QianLijuan, Lin Jianzhong#, BaoFubing, “Numerical models for viscoelastic liquid atomization spray”,Energies, 2016, Vol.9, No.12, 1079; doi:10.3390/en9121079, P1-17.

26.   Hong-bingXiong#, Cheng-yu Zhang, Kai Zhang, Xue-Ming Shao, Effects of Atomization Injection on Nanoparticle Processing in Suspension Plasma SprayNanomaterials 2016, 6, 94-109.

27.   Kai Zhang*Hong-bingXiong#, Xue-Ming Shao, Dynamic modeling of micro- and nano-sized particles impinging on the substrate during suspension plasma spraying, Jounal of Zhejiang University Science A,2016:Vol.17 No.9 P.733-744.

28.   叶辉*,熊红兵#,陆灏,雷本宏,黄志龙,动网格模拟风振对超大瘦高型冷却塔风荷载的影响,应用力学学报,20166期,963-969.

29.   Jian Chen, Liu Chen, Long Nie, Hongtao Xu, Yang Mo, and Canxing Wang#Experimental study of two-stage Savonius rotors with different gap ratios and phase shift angles,Journal of Renewable and Sustainable Energy 8(2016), 063302.

30.   Chen Jian, He Yuan, Gui Li, Wang Canxing#, Chen Liu, Li Yuanrui, Aerodynamic noise prediction of a centrifugal fan considering the voluteeffect using IBEM, Applied Acoustics 132 (2018) 182-190.

31.   Jian Chen,#Xiong Pan, Canxing Wang, Guojun Hu, Hongtao Xu, Pengwei Liu, Airfoil parameterization evaluation based on a modified PARASEC method for a H-Darrious rotor, Energy 187 (2019), 115910.