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| Effect of Substrate Microstructure on Thermocapillary Flow and Heat Transfer of Nanofluid Droplet on Heated Wall 期刊论文 MICROGRAVITY SCIENCE AND TECHNOLOGY, 2021, 卷号: 33, 期号: 3, 页码: 10 Authors: Jiang, Yanni; Chi, Faxuan; Chen QS(陈启生) ; Zhou, Xiaoming
Adobe PDF(1467Kb)  |   Favorite  |  View/Download:305/80  |  Submit date:2021/06/15 Droplet Substrate microstructure Nanofluid Thermocapillary convection Two-phase mixture model Heat transfer |
| Lattice Boltzmann Study on Influence of Gravitational Acceleration on Pool Nucleate Boiling Heat Transfer 期刊论文 MICROGRAVITY SCIENCE AND TECHNOLOGY, 2021, 卷号: 33, 期号: 2, 页码: 16 Authors: Feng Yuan; Li Huixiong ; Zhao JF(赵建福) ; Guo Kaikai; Lei Xianliang
Adobe PDF(2232Kb)  |   Favorite  |  View/Download:279/97  |  Submit date:2021/05/06 Lattice Boltzmann method Pool boiling heat transfer Gravity scaling model |
| The Payload Development and the Experiments for Studying Thermocapillary Convection in TG-2 Liquid Bridge 期刊论文 MICROGRAVITY SCIENCE AND TECHNOLOGY, 2021, 卷号: 33, 期号: 1, 页码: 14 Authors: Duan L(段俐) ; Kang Q(康琦) ; Zhang, Jianquan; Li, Xiang; Hu L(胡良) ; Zhou B(周滨); Li LJ(李陆军) ; Wu D(吴笛) ; Wang J(王佳); Zhang P(张璞)![](/image/person.jpg)
Adobe PDF(2380Kb)  |   Favorite  |  View/Download:278/52  |  Submit date:2021/03/30 Liquid bridge Payload development Experiment verification Space experiment |
| Dynamic Behavior in a Storage Tank in Reduced Gravity Using Dynamic Contact Angle Method 期刊论文 MICROGRAVITY SCIENCE AND TECHNOLOGY, 2020, 页码: 10 Authors: Li JC(李吉成); Lin H(林海) ; Li K(李凯) ; Zhao JF(赵建福) ; Hu WR(胡文瑞)![](/image/person.jpg)
Adobe PDF(3646Kb)  |   Favorite  |  View/Download:373/178  |  Submit date:2020/11/30 Storage tank Dynamic behavior Oscillation frequency Microgravity Dynamic contact angle Liquid sloshing |
| Giant Fluctuations Induced by Thermal Diffusion in Complex Liquids 期刊论文 MICROGRAVITY SCIENCE AND TECHNOLOGY, 2020, 页码: 15 Authors: Vailati A; Baaske P; Bataller H; Bolis S; Braibanti M; Carpineti M; Cerbino R; Croccolo F; Dewandel JL; Donev A; Garcia-Fernandez L; Giavazzi F; Haslinger R; Hens S; Knauer M; Koehler W; Kufner E; Ortiz de Zarate JM; Peeters J; Schwarz CJ; Silkina I; Xu SH(徐升华) ; Zapf D
Adobe PDF(1638Kb)  |   Favorite  |  View/Download:451/318  |  Submit date:2020/08/26 Thermodiffusion Microgravity Non-equilibrium fluctuations Shadowgraph Transport properties |
| Liquid Sloshing in Partially Filled Capsule Storage Tank Undergoing Gravity Reduction to Low/Micro-Gravity Condition 期刊论文 MICROGRAVITY SCIENCE AND TECHNOLOGY, 2020, 页码: 10 Authors: Li JC(李吉成); Lin H(林海) ; Li K(李凯) ; Zhao JF(赵建福) ; Hu WR(胡文瑞)![](/image/person.jpg)
Adobe PDF(1610Kb)  |   Favorite  |  View/Download:296/128  |  Submit date:2020/08/26 Liquid sloshing Tank Low micro gravity VOF method Contact angle |
| Numerical Study of Thermocapillary-Buoyancy Convection of Volatile Liquid Layer in an Enclosed Cavity 期刊论文 MICROGRAVITY SCIENCE AND TECHNOLOGY, 2020, 卷号: 32, 期号: 3, 页码: 305-319 Authors: Xu GF(徐国峰) ; Liu QS(刘秋生) ; Qin J(秦军); Zhu ZQ(朱志强)![](/image/person.jpg)
Adobe PDF(2092Kb)  |   Favorite  |  View/Download:245/87  |  Submit date:2020/08/26 Thermocapillary-buoyancy convection Phase change Flow instability and transition Two-phase flow Numerical simulation |
| Numerical Simulation of Fluid Transport along Parallel Vanes for Vane Type Propellant Tanks 期刊论文 MICROGRAVITY SCIENCE AND TECHNOLOGY, 2020, 卷号: 32, 期号: 2, 页码: 129-138 Authors: Zhuang BT; Li Y; Liu JT ; Rui W(芮伟)
Adobe PDF(2507Kb)  |   Favorite  |  View/Download:287/107  |  Submit date:2020/08/26 Microgravity Vane type tank Fluid flow Propellant management Surface tension driven flow |
| Numerical Investigation on Single Bubble and Multiple Bubbles Growth and Heat Transfer During Flow Boiling in A Microchannel Using the VOSET Method 期刊论文 MICROGRAVITY SCIENCE AND TECHNOLOGY, 2019, 卷号: 31, 期号: 4, 页码: 381-393 Authors: Guo KK; Li HX ; Feng Y; Zhao JF(赵建福); Wang T![](/image/person.jpg)
View  |   Adobe PDF(2303Kb)  |   Favorite  |  View/Download:282/109  |  Submit date:2019/10/14 Single bubble Multiple bubbles Flow boiling Microchannel VOSET Method |
| Numerical Simulation of Quasi-Static Bubble Formation from a Submerged Orifice by the Axisymmetric VOSET Method 期刊论文 MICROGRAVITY SCIENCE AND TECHNOLOGY, 2019, 卷号: 31, 期号: 3, 页码: 279-292 Authors: Wang T ; Li HX ; Zhao JF(赵建福) ; Guo KK
Adobe PDF(1591Kb)  |   Favorite  |  View/Download:254/103  |  Submit date:2019/09/09 Axisymmetric VOSET method Bubble formation Bubble detachment Static contact angle Numerical simulation |