In the present study, the flow boiling heat transfer of R1234ze(E), R32 and zeotropic mixture R1234ze(E)/R32 (50/50 mass%) in a horizontal micro-fin tube is experimentally investigated to clarify the pressure drop and heat transfer characteristics. Tested micro-fin tube is made of copper, and its geometry is as follows, 6.00 mm in outer diameter, 5.21 mm in mean inside diameter, 0.26 mm in fin height and 20 degree in spiral angle. Experiments are conducted in the mass velocity range of 150 to 400 kg m-2s-1 at a constant inlet temperature 10 oC. The effects of mass velocity and the difference of refrigerants on heat transfer and frictional pressure drop characteristics are clarified. The measured pressure drop and heat transfer characteristi...
Currently, the development of high-performance and compact heat exchangers using small diameter tube...
Currently, the development of high-performance and compact heat exchangers using small diameter tube...
In present study, the two phase flow boiling heat transfer coefficient and pressure drop of R32 , R4...
In the present study, the flow boiling heat transfer of R1234ze(E), R32 and zeotropic mixture R1234z...
This paper presents R1233d(E) and R245fa flow boiling heat transfer and pressure drop measurements i...
This paper presents R1233d(E) and R245fa flow boiling heat transfer and pressure drop measurements i...
This paper presents R1233d(E) and R245fa flow boiling heat transfer and pressure drop measurements i...
This paper presents R1233d(E) and R245fa flow boiling heat transfer and pressure drop measurements i...
Currently, the development of high-performance and compact heat exchangers with small- diameter tube...
Currently, the development of high-performance and compact heat exchangers with small- diameter tube...
The heat transfer characteristics of the low global warming potential refrigerant mixture R744/R32/R...
This paper compares the condensation heat transfer and pressure drop for zeotropic refrigerant R454C...
This paper compares the condensation heat transfer and pressure drop for zeotropic refrigerant R454C...
This paper compares the condensation heat transfer and pressure drop for zeotropic refrigerant R454C...
Currently, the development of high-performance and compact heat exchangers using small diameter tube...
Currently, the development of high-performance and compact heat exchangers using small diameter tube...
Currently, the development of high-performance and compact heat exchangers using small diameter tube...
In present study, the two phase flow boiling heat transfer coefficient and pressure drop of R32 , R4...
In the present study, the flow boiling heat transfer of R1234ze(E), R32 and zeotropic mixture R1234z...
This paper presents R1233d(E) and R245fa flow boiling heat transfer and pressure drop measurements i...
This paper presents R1233d(E) and R245fa flow boiling heat transfer and pressure drop measurements i...
This paper presents R1233d(E) and R245fa flow boiling heat transfer and pressure drop measurements i...
This paper presents R1233d(E) and R245fa flow boiling heat transfer and pressure drop measurements i...
Currently, the development of high-performance and compact heat exchangers with small- diameter tube...
Currently, the development of high-performance and compact heat exchangers with small- diameter tube...
The heat transfer characteristics of the low global warming potential refrigerant mixture R744/R32/R...
This paper compares the condensation heat transfer and pressure drop for zeotropic refrigerant R454C...
This paper compares the condensation heat transfer and pressure drop for zeotropic refrigerant R454C...
This paper compares the condensation heat transfer and pressure drop for zeotropic refrigerant R454C...
Currently, the development of high-performance and compact heat exchangers using small diameter tube...
Currently, the development of high-performance and compact heat exchangers using small diameter tube...
Currently, the development of high-performance and compact heat exchangers using small diameter tube...
In present study, the two phase flow boiling heat transfer coefficient and pressure drop of R32 , R4...