This paper presents a comparison of the performance of three smooth heated surfaces with different thicknesses. Analysis was carried out on an experimental setup for flow boiling heat transfer. The most important element of the setup was the test section with a rectangular minichannel, 1.7 mm deep, 16 mm wide and 180 mm long, oriented vertically. The heated element for the FC-72 Fluorinert flowing in the minichannel was designated as a Haynes-230 alloy plate (0.10 mm and 0.45 mm thick) or a Hastelloy X alloy plate (0.65 mm thick). Infrared thermography was used to measure the temperature of the outer plate surface. The local values of the heat transfer coefficient for stationary state conditions were calculated using a simple one-dimensiona...
The paper presents results of flow boiling in a minichannel of 1.0 mm depth. The heating element for...
Technology advancements entail a necessity to remove huge amounts of heat produced by today’s electr...
Graduation date: 2006A unique channel surface enhancement technique via diffusion-bonding a layer of...
The paper presents results of flow boiling in a rectangular minichannel 1 mm deep, 40 mm wide and 36...
The paper presents results of flow boiling in a rectangular minichannel 1 mm deep, 40 mm wide and 36...
The paper presents results of flow boiling in a rectangular minichannel 1 mm deep, 40 mm wide and 36...
This paper presents results concerning flow boiling heat transfer in three parallel vertically orien...
This paper reports an impact of selected thermal and flow parameters i.e., mass flux and inlet press...
This paper reports an impact of selected thermal and flow parameters i.e., mass flux and inlet press...
This paper reports an impact of selected thermal and flow parameters i.e., mass flux and inlet press...
The aim of the paper is to estimate effect of the heating surface enhancement on FC-72 flow boiling ...
The aim of the paper is to estimate effect of the heating surface enhancement on FC-72 flow boiling ...
The paper reports results for flow boiling heat transfer in a 1.7 mm deep minichannel vertically-ori...
The paper reports results for flow boiling heat transfer in a 1.7 mm deep minichannel vertically-ori...
The effect of aspect ratio on the flow boiling heat transfer of HFE-7100 in horizontal multi-microch...
The paper presents results of flow boiling in a minichannel of 1.0 mm depth. The heating element for...
Technology advancements entail a necessity to remove huge amounts of heat produced by today’s electr...
Graduation date: 2006A unique channel surface enhancement technique via diffusion-bonding a layer of...
The paper presents results of flow boiling in a rectangular minichannel 1 mm deep, 40 mm wide and 36...
The paper presents results of flow boiling in a rectangular minichannel 1 mm deep, 40 mm wide and 36...
The paper presents results of flow boiling in a rectangular minichannel 1 mm deep, 40 mm wide and 36...
This paper presents results concerning flow boiling heat transfer in three parallel vertically orien...
This paper reports an impact of selected thermal and flow parameters i.e., mass flux and inlet press...
This paper reports an impact of selected thermal and flow parameters i.e., mass flux and inlet press...
This paper reports an impact of selected thermal and flow parameters i.e., mass flux and inlet press...
The aim of the paper is to estimate effect of the heating surface enhancement on FC-72 flow boiling ...
The aim of the paper is to estimate effect of the heating surface enhancement on FC-72 flow boiling ...
The paper reports results for flow boiling heat transfer in a 1.7 mm deep minichannel vertically-ori...
The paper reports results for flow boiling heat transfer in a 1.7 mm deep minichannel vertically-ori...
The effect of aspect ratio on the flow boiling heat transfer of HFE-7100 in horizontal multi-microch...
The paper presents results of flow boiling in a minichannel of 1.0 mm depth. The heating element for...
Technology advancements entail a necessity to remove huge amounts of heat produced by today’s electr...
Graduation date: 2006A unique channel surface enhancement technique via diffusion-bonding a layer of...