R134a vapour-liquid two-phase flow patterns were studied in vertical small diameter tubes. The observed flow patterns include bubbly, dispersed bubble, slug, churn, annular and mist flow. Six integrated flow pattern maps, derived for two internal diameters (2.01 and 4.26 mm) and three different pressures (6.0, 10.0, 14.0 bar), are presented. Some transition boundaries, such as slug-churn and churn-annular, were found to be very sensitive to diameter and pressure. On the contrary, the boundaries of dispersed bubble-churn and bubbly-slug are less affected. The transition boundaries are compared with the existing models for normal size tubes showing significant differences
This thesis is dedicated to the experimental and theoretical study of flow boiling in small to micro...
New production techniques, which became available since the 1980’s, allowed the mass production of s...
Flow boiling heat transfer experimental results, obtained in two stainless steel tubes of internal d...
Two-phase flow patterns were studied in vertical small diameter tubes using R134a as the working flu...
This thesis was submitted for the degree of Doctor of Philosophy and awarded by Brunel University, 2...
Flow boiling flow patterns in four circular tubes with internal diameters of 1.10, 2.01, 2.88 and 4....
Two-phase flow in small tubes and channels is becoming a common phenomenon in industrial processes. ...
An overview of the recent developments in the study of flow patterns and boiling heat transfer in sm...
Visual observations of two-phase regimes for R134a and R245fa flowing in 0.509 mm and 0.790 mm horiz...
AbstractAn evaluation of models and correlations predicting flow patterns in mini-tubes is described...
An experimental investigation of adiabatic upward co-current air-water two phase flow has been carri...
An experimental investigation of adiabatic upward co-current air-water two phase flow has been carri...
An evaluation of models and correlations predicting flow patterns in mini-tubes is described in this...
Experiments were conducted to determine the transition from annular to semiannular flow regimes for ...
This thesis was submitted for the award of Doctor of Philosophy and was awarded by Brunel University...
This thesis is dedicated to the experimental and theoretical study of flow boiling in small to micro...
New production techniques, which became available since the 1980’s, allowed the mass production of s...
Flow boiling heat transfer experimental results, obtained in two stainless steel tubes of internal d...
Two-phase flow patterns were studied in vertical small diameter tubes using R134a as the working flu...
This thesis was submitted for the degree of Doctor of Philosophy and awarded by Brunel University, 2...
Flow boiling flow patterns in four circular tubes with internal diameters of 1.10, 2.01, 2.88 and 4....
Two-phase flow in small tubes and channels is becoming a common phenomenon in industrial processes. ...
An overview of the recent developments in the study of flow patterns and boiling heat transfer in sm...
Visual observations of two-phase regimes for R134a and R245fa flowing in 0.509 mm and 0.790 mm horiz...
AbstractAn evaluation of models and correlations predicting flow patterns in mini-tubes is described...
An experimental investigation of adiabatic upward co-current air-water two phase flow has been carri...
An experimental investigation of adiabatic upward co-current air-water two phase flow has been carri...
An evaluation of models and correlations predicting flow patterns in mini-tubes is described in this...
Experiments were conducted to determine the transition from annular to semiannular flow regimes for ...
This thesis was submitted for the award of Doctor of Philosophy and was awarded by Brunel University...
This thesis is dedicated to the experimental and theoretical study of flow boiling in small to micro...
New production techniques, which became available since the 1980’s, allowed the mass production of s...
Flow boiling heat transfer experimental results, obtained in two stainless steel tubes of internal d...