Zobrazeno 1 - 10
of 23
pro vyhledávání: '"Linmao Yin"'
Publikováno v:
SSRN Electronic Journal.
Publikováno v:
Physics of Fluids. 34:114108
In this work, we explore the instability of the complex convection in the Czochralski model concerning the effects of the radii ratio, melt materials, and crystal rotation. Particularly, linear stability analysis is conducted based on the spectral el
Publikováno v:
Physics of Fluids. 34:114109
In this paper, we explore thermocapillary liquid bridges between two disks of unequal radii with Prandtl numbers Pr of 0.0258 (mercury) and 0.068 (gallium arsenide) to gain insight into the underlying instability mechanism. In the context of Legendre
Publikováno v:
Journal of Thermal Science. 29:251-259
Thermocapillary flow of silicon melt (Pr=0.011) in shallow annular pool heated from inner wall was simulated at the dimensionless rotation rate ω ranging from 0~7000. The effect of pool rotation on the stability of the thermocapillary flow was inves
Publikováno v:
International Journal of Thermal Sciences. 137:500-507
To understand the effects of crucible/crystal rotation on the instability of thermocapillary flow in a shallow Czochralski configuration, a series of linear stability analysis were performed by using Legendre spectral element method, and the energy a
Publikováno v:
International Journal of Heat and Mass Transfer. 129:746-752
Thermocapillary flow instabilities in annular pool with different aspect ratios were investigated by the linear stability analysis based on the Legendre spectral element method. The energy analysis was applied to explore the underlying physical mecha
Publikováno v:
Journal of Crystal Growth. 589:126670
Publikováno v:
Microgravity Science and Technology. 33
The linear stability of thermocapillary flow in a rotating annular pool at intermediate Prandtl number (Pr = 1.4) was studied over a wide range of rotation rate. The critical Marangoni number for the onset of flow instability was determined using lin
Publikováno v:
Physics of Fluids. 34:062113
We explore the geometric effects on the thermocapillary flow instabilities in large Prandtl number ( Pr = 1.4) liquid bridges between two coaxial disks with different radii under microgravity, focusing on the impacts of radius ratio Γr and aspect ra
Publikováno v:
International Journal of Heat and Mass Transfer. 183:122182
The primary instability of thermocapillary flow in a liquid bridge between two coaxial disks with different radii is investigated under microgravity for silicon melt with Prandtl number Pr=0.011 via two heating strategies. The static deformation of t