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微重力重点实验室 [10]
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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)
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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
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Submit date:2020/08/26
Thermodiffusion
Microgravity
Non-equilibrium fluctuations
Shadowgraph
Transport properties
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)
Adobe PDF(2092Kb)
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Submit date:2020/08/26
Thermocapillary-buoyancy convection
Phase change
Flow instability and transition
Two-phase flow
Numerical simulation
Numerical Simulation on the Effects of Component Layout Orientation on the Performance of a Neon-Charged Cryogenic Loop Heat Pipe
期刊论文
MICROGRAVITY SCIENCE AND TECHNOLOGY, 2020, 卷号: 32, 期号: 2, 页码: 179-188
Authors:
He FL(何发龙)
;
Du WF(杜王芳)
;
Zhao JF(赵建福)
;
Li JD
;
Miao JY
;
He J
Adobe PDF(1604Kb)
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Submit date:2020/08/26
Cryogenic loop heat pipe
Transient model
Layout orientation
Operation performance
Gravity effect
Transition to Chaos of Buoyant-Thermocapillary Convection in Large-Scale Liquid Bridges
期刊论文
MICROGRAVITY SCIENCE AND TECHNOLOGY, 2020, 卷号: 32, 期号: 2, 页码: 217-227
Authors:
Wang J(王佳)
;
Duan L(段俐)
;
Kang Q(康琦)
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Submit date:2020/08/26
Thermocapillary convection
Large-scale liquid bridge
Transition route
Temperature oscillation
Chaotic dynamic analysis
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
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View/Download:244/99
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Submit date:2019/09/09
Axisymmetric VOSET method
Bubble formation
Bubble detachment
Static contact angle
Numerical simulation
Three-Dimensional Numerical Simulation on Marangoni Convection in a Sessile Water Droplet Evaporating in its Vapor at Low Pressure
期刊论文
MICROGRAVITY SCIENCE AND TECHNOLOGY, 2019, 卷号: 31, 期号: 2, 页码: 231-240
Authors:
Zhang Y
;
Li YR
;
Yu JJ
;
Liu QS(刘秋生)
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View/Download:337/151
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Submit date:2019/06/10
Sessile droplet
Evaporation
Marangoni convection
Kinetic model
Numerical simulation
Experimental Research on Thermocapillary-Buoyancy Migration Interaction of Axisymmetric Two Drops by Using Digital Holographic Interferometry
期刊论文
MICROGRAVITY SCIENCE AND TECHNOLOGY, 2018, 卷号: 30, 期号: 3, 页码: 183-193
Authors:
Zhang ST(张朔婷)
;
Duan L(段俐)
;
Kang Q(康琦)
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Submit date:2018/10/30
Interfacial tension
Thermocapillary migration
Drop
Interaction
Thermodynamic Behaviors of Macroscopic Liquid Droplets Evaporation from Heated Substrates
期刊论文
MICROGRAVITY SCIENCE AND TECHNOLOGY, 2015, 卷号: 27, 期号: 5, 页码: 353-360
Authors:
Chen X
;
Zhu ZQ(朱志强)
;
Liu QS(刘秋生)
;
Wang XW
;
Liu, QS (reprint author), Chinese Acad Sci, Inst Mech, Natl Micrograv Lab, Key Lab Micrograv, Beijing 100190, Peoples R China.
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Submit date:2016/01/08
Sessile Drop Evaporation
Thermocaplliry Convection
Buoyant Convection
Heat And Mass Transfer
Dynamical and Microrheological Analysis of Amyloplasts in the Plant Root Gravity-Sensing Cells
期刊论文
MICROGRAVITY SCIENCE AND TECHNOLOGY, 2015, 卷号: 27, 期号: 6, 页码: 485-493
Authors:
Zheng ZY(郑中玉)
;
Zou JJ
;
Li HH
;
Xue S
;
Le J
;
Wang YR(王育人)
;
Zheng, ZY (reprint author), Chinese Acad Sci, Key Lab Micrograv, Inst Mech, Beijing 100190, Peoples R China.
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Submit date:2016/01/08
Plant Gravitropism
Gravity Sensing
Amyloplasts
Columella Cells
Microrheology
Diffusion
Cage-confinement