The paper describes results of analysis of pool boiling heat transfer on enhanced surfaces. Two types of structural surfaces were used: open microchannel surfaces consisting of a system of parallel micro-channels 0.3 mm wide, from 0.2 to 0.5 mm deep and with a pitch of 0.6 mm, and plain micro-fins 0.5 mm in height, uniformly spaced on the base surface with a spacing from 0.6 to1.5 mm. Pool boiling data at atmospheric pressure were obtained for saturated water, ethanol and FC-72. The effects of micro-channel/micro-fin dimensions on heat transfer coefficient in nucleate pool boiling were examined. Substantial enhancement of heat transfer coefficient was observed
An experimental study of the pool boiling process on three test surfaces, namely, Plain surface, Rec...
This study reviews recent experimental investigations performed on pool and flow boiling over nano- ...
Complex experimental investigations of boiling heat transfer on structured surfaces covered with per...
The paper describes results of analysis of pool boiling heat transfer on enhanced surfaces. Two type...
This study focuses on the effect of channel depth on the heat transfer coefficient during nucleate p...
The paper presents experimental investigations into pool boiling heat transfer for open microchannel...
Experimental investigations of pool boiling heat transfer on microchannels of variable depth were co...
The paper focuses on the analysis of the enhanced surfaces in such applications as boiling heat tran...
The paper presents the results of experimental research on pool boiling heat transfer of dielectric ...
The paper presents visualization investigations into pool boiling heat transfer for open minichannel...
We study the effectiveness of microstructured surfaces in enhancing the boiling heat transfer (BHT) ...
The paper presents visualization investigations into pool boiling heat transfer for open microchanne...
Boiling is an efficacious mode of heat transfer and is utilized in various energy conversions, heat ...
The paper presents investigations into pool boiling heat transfer for open minichannel surfaces. The...
The surfaces used for investigating nucleate pool boiling for four working fluids had mini- and micr...
An experimental study of the pool boiling process on three test surfaces, namely, Plain surface, Rec...
This study reviews recent experimental investigations performed on pool and flow boiling over nano- ...
Complex experimental investigations of boiling heat transfer on structured surfaces covered with per...
The paper describes results of analysis of pool boiling heat transfer on enhanced surfaces. Two type...
This study focuses on the effect of channel depth on the heat transfer coefficient during nucleate p...
The paper presents experimental investigations into pool boiling heat transfer for open microchannel...
Experimental investigations of pool boiling heat transfer on microchannels of variable depth were co...
The paper focuses on the analysis of the enhanced surfaces in such applications as boiling heat tran...
The paper presents the results of experimental research on pool boiling heat transfer of dielectric ...
The paper presents visualization investigations into pool boiling heat transfer for open minichannel...
We study the effectiveness of microstructured surfaces in enhancing the boiling heat transfer (BHT) ...
The paper presents visualization investigations into pool boiling heat transfer for open microchanne...
Boiling is an efficacious mode of heat transfer and is utilized in various energy conversions, heat ...
The paper presents investigations into pool boiling heat transfer for open minichannel surfaces. The...
The surfaces used for investigating nucleate pool boiling for four working fluids had mini- and micr...
An experimental study of the pool boiling process on three test surfaces, namely, Plain surface, Rec...
This study reviews recent experimental investigations performed on pool and flow boiling over nano- ...
Complex experimental investigations of boiling heat transfer on structured surfaces covered with per...