Javascript must be enabled to continue!
Interfacial Area Transport of Bubbly Flow Under Microgravity Environment
View through CrossRef
In relation to the development of the interfacial area transport equation, axial developments of one-dimensional void fraction, bubble number density, interfacial area concentration, and Sauter mean diameter of adiabatic nitrogen-water bubbly flows in a 9 mm-diameter pipe were measured by using an image-processing method under microgravity environment. The flow measurements were performed at four axial locations (axial distance from the inlet normalized by the pipe diameter = 7, 30, 45 and 60) under various flow conditions of superficial gas velocity (0.0083 m/s ∼ 0.022 m/s) and superficial liquid velocity (0.073 m/s ∼ 0.22 m/s). The interfacial area transport mechanism under microgravity environment was discussed in detail based on the obtained data and the visual observation. These data can be used for the development of reliable constitutive relations which reflect the true transfer mechanisms in two-phase flow under microgravity environment.
Title: Interfacial Area Transport of Bubbly Flow Under Microgravity Environment
Description:
In relation to the development of the interfacial area transport equation, axial developments of one-dimensional void fraction, bubble number density, interfacial area concentration, and Sauter mean diameter of adiabatic nitrogen-water bubbly flows in a 9 mm-diameter pipe were measured by using an image-processing method under microgravity environment.
The flow measurements were performed at four axial locations (axial distance from the inlet normalized by the pipe diameter = 7, 30, 45 and 60) under various flow conditions of superficial gas velocity (0.
0083 m/s ∼ 0.
022 m/s) and superficial liquid velocity (0.
073 m/s ∼ 0.
22 m/s).
The interfacial area transport mechanism under microgravity environment was discussed in detail based on the obtained data and the visual observation.
These data can be used for the development of reliable constitutive relations which reflect the true transfer mechanisms in two-phase flow under microgravity environment.
Related Results
WWP1 deficiency protects from cardiac remodeling induced by simulated microgravity
WWP1 deficiency protects from cardiac remodeling induced by simulated microgravity
AbstractCardiac muscle is extremely sensitive to changes in loading conditions, the microgravity during space flight can cause cardiac remodeling and function decline. At present, ...
Interfacial thermal conductance of gallium nitride/graphene/diamond heterostructure based on molecular dynamics simulation
Interfacial thermal conductance of gallium nitride/graphene/diamond heterostructure based on molecular dynamics simulation
<sec>Gallium nitride chips are widely used in high-frequency and high-power devices. However, thermal management is a serious challenge for gallium nitride devices. To improv...
Alternative splicing regulates the physiological adaptation of the mouse hind limb postural and phasic muscles to microgravity
Alternative splicing regulates the physiological adaptation of the mouse hind limb postural and phasic muscles to microgravity
Abstract
Muscle atrophy and fiber type alterations are well-characterized physiological adaptations to microgravity with both understood to be pr...
Interfacial Adhesion in Fibre-Polymer Composites
Interfacial Adhesion in Fibre-Polymer Composites
<p>The mechanical performance of a fibre-polymer composite is largely determined by the strength of interfacial adhesion across the fibre-polymer phase boundary. Therefore, a...
Distribution Parameter and Drift Velocity of Drift-Flux Model in Bubbly Flow
Distribution Parameter and Drift Velocity of Drift-Flux Model in Bubbly Flow
In view of the practical importance of the drift-flux model for two-phase flow analysis in general and in the analysis of nuclear-reactor transients and accidents in particular, th...
Interfacial Area Transport of Vertical Upward Annular Two-Phase Flow
Interfacial Area Transport of Vertical Upward Annular Two-Phase Flow
Accurate prediction of the interfacial area concentration is essential to successful development of the interfacial transfer terms in the two-fluid model. The interfacial area conc...
The Effects of Simulated Microgravity on Macrophage Phenotype
The Effects of Simulated Microgravity on Macrophage Phenotype
The effects of spaceflight, including prolonged exposure to microgravity, can have significant effects on the immune system and human health. Altered immune cell function can lead ...
Analysis of the Microgravity Research Ecosystem and Market Drivers of Accessibility
Analysis of the Microgravity Research Ecosystem and Market Drivers of Accessibility
For decades, the International Space Station (ISS) has operated as a bastion of international cooperation and a unique testbed for microgravity research. In recent years, private i...

