This paper presents an improved prediction method for the heat transfer and pressure drop in the shell side of a horizontal shell and tube evaporator. The results from an experimental test program are used in which a wide range of evaporating two-phase shell side flow data was collected from a TEMA E-shell evaporator. The data are compared with shell side heat transfer coefficient and pressure drop models for homogeneous and stratified flow. The comparison suggests a deterioration in the heat transfer data at low mass fluxes consistent with a transition from homogeneous to stratified flow. The pressure drop data suggest a stratified flow across the full test range. A new model is presented that suggests the transition in the heat transfer d...
An un-baffled shell-and-tube heat exchanger design with respect to heat transfer coefficient and pre...
A physical model of gas–liquid two-phase annular flow regime is presented for predicting the enhance...
http://deepblue.lib.umich.edu/bitstream/2027.42/5234/5/bac3728.0001.001.pdfhttp://deepblue.lib.umich...
This paper presents an improved prediction method for the heat transfer and pressure drop in the she...
The thesis describes the results of a research programme involving both experimental and modelling w...
The thesis describes the results of a research programme involving both experimental and modelling w...
The pressure drop across a heat exchanger is an important parameter, along with the heat transfer ca...
The pressure drop across a heat exchanger is an important parameter, along with the heat transfer ca...
The paper describes some results from a research programme to study forced flow shellside boiling in...
The paper describes some results from a research programme to study forced flow shellside boiling in...
The paper describes some results from a research programme to study forced flow shellside boiling in...
This study experimentally investigated the shell side heat transfer and pressure drop of a mini-chan...
Few experimental test data are available for evaporation of ammonia inside tubes and numerous new da...
Accurate prediction of shellside pressure drop in a baffled shell-and-tube heat exchanger is very di...
In this paper, a simplified model for the study of shell-and-tubes heat exchangers (HXs) is proposed...
An un-baffled shell-and-tube heat exchanger design with respect to heat transfer coefficient and pre...
A physical model of gas–liquid two-phase annular flow regime is presented for predicting the enhance...
http://deepblue.lib.umich.edu/bitstream/2027.42/5234/5/bac3728.0001.001.pdfhttp://deepblue.lib.umich...
This paper presents an improved prediction method for the heat transfer and pressure drop in the she...
The thesis describes the results of a research programme involving both experimental and modelling w...
The thesis describes the results of a research programme involving both experimental and modelling w...
The pressure drop across a heat exchanger is an important parameter, along with the heat transfer ca...
The pressure drop across a heat exchanger is an important parameter, along with the heat transfer ca...
The paper describes some results from a research programme to study forced flow shellside boiling in...
The paper describes some results from a research programme to study forced flow shellside boiling in...
The paper describes some results from a research programme to study forced flow shellside boiling in...
This study experimentally investigated the shell side heat transfer and pressure drop of a mini-chan...
Few experimental test data are available for evaporation of ammonia inside tubes and numerous new da...
Accurate prediction of shellside pressure drop in a baffled shell-and-tube heat exchanger is very di...
In this paper, a simplified model for the study of shell-and-tubes heat exchangers (HXs) is proposed...
An un-baffled shell-and-tube heat exchanger design with respect to heat transfer coefficient and pre...
A physical model of gas–liquid two-phase annular flow regime is presented for predicting the enhance...
http://deepblue.lib.umich.edu/bitstream/2027.42/5234/5/bac3728.0001.001.pdfhttp://deepblue.lib.umich...