The process of condensation of vapors on a laminar, falling film of immiscible liquid is formulated within the framework of certain assumptions for a laminar, two-film model. The numerical solutions are presented for a wide range of parameters, and it is observed that the dynamics of the falling film has a profound influence on the condensation heat transfer rates. The condensation heat transfer coefficient is found to be a function of the modified Graetz number, subcooling parameter, and the heat capacity ratio of coolant-to-condensate. Further, shorter liquid film lengths would yield considerably high condensation heat transfer rates in comparison with the Nusselt analysis
This paper gives similarity transformations for laminar film condensation on a vertical flat plate ...
Includes bibliographical references (pages 28-30)A simplified computer solution for laminar film con...
In order to study the heat transfer of the falling film evaporator with phase change on both sides, ...
The process of condensation of vapors on a laminar, falling film of immiscible liquid is formulated ...
Since the petroleum crisis in the 1970s, a lot of effort to save energy was made in industry, and re...
Heat transfer coefficients for condensing vapors of the immiscible systems benzene-water, heptane-wa...
Analytical solutions for laminar film condensation on a vertical plate are integral to many heat tra...
We study in this paper, using asymptotic techniques, the laminar film condensation process of a forc...
An analytical study is presented of the condensation of a pure saturated vapour on a cooled channel ...
An analytical study is presented of the condensation of a pure saturated vapour on a cooled channel ...
An analytical study is presented of the condensation of a pure saturated vapour on a cooled channel ...
An analytical study is presented of the condensation of a pure saturated vapour on a cooled channel ...
An analytical study is presented of the condensation of a pure saturated vapour on a cooled channel ...
This paper gives similarity transformations for laminar film condensation on a vertical flat plate ...
An analytical study is presented of the condensation of a pure saturated vapour on a cooled channel ...
This paper gives similarity transformations for laminar film condensation on a vertical flat plate ...
Includes bibliographical references (pages 28-30)A simplified computer solution for laminar film con...
In order to study the heat transfer of the falling film evaporator with phase change on both sides, ...
The process of condensation of vapors on a laminar, falling film of immiscible liquid is formulated ...
Since the petroleum crisis in the 1970s, a lot of effort to save energy was made in industry, and re...
Heat transfer coefficients for condensing vapors of the immiscible systems benzene-water, heptane-wa...
Analytical solutions for laminar film condensation on a vertical plate are integral to many heat tra...
We study in this paper, using asymptotic techniques, the laminar film condensation process of a forc...
An analytical study is presented of the condensation of a pure saturated vapour on a cooled channel ...
An analytical study is presented of the condensation of a pure saturated vapour on a cooled channel ...
An analytical study is presented of the condensation of a pure saturated vapour on a cooled channel ...
An analytical study is presented of the condensation of a pure saturated vapour on a cooled channel ...
An analytical study is presented of the condensation of a pure saturated vapour on a cooled channel ...
This paper gives similarity transformations for laminar film condensation on a vertical flat plate ...
An analytical study is presented of the condensation of a pure saturated vapour on a cooled channel ...
This paper gives similarity transformations for laminar film condensation on a vertical flat plate ...
Includes bibliographical references (pages 28-30)A simplified computer solution for laminar film con...
In order to study the heat transfer of the falling film evaporator with phase change on both sides, ...