In this paper we examine the effect of contact angle (or surface wettability) on the convective heat transfer coefficient in microchannels. Slip flow, where the fluid velocity at the wall is non-zero, is most likely to occur in microchannels due to its dependence on shear rate or wall shear stress. We show analytically that for a constant pressure drop, the presence of slip increases the Nusselt number. In a microchannel heat exchanger we modified the surface wettability from a contact angle of 20 degrees-120 degrees using thin film coating technology. Apparent slip flow is implied from pressure and flow rate measurements with a departure from classical laminar friction coefficients above a critical shear rate of approximately 10,000 s(-1)....
A bibliographical review on the convective heat transfer through microchannels is presented. The ava...
This dissertation presents an experimental investigation of laminar gas flow and heat transfer throu...
This article provides numerically study of the thermal performance of a microchannel, cooled with ei...
In this paper we examine the effect of contact angle (or surface wettability) on the convective heat...
An experimental investigation has been performed on the laminar convective heat transfer and pressur...
In this paper we explore issues in designing a heat exchanger for a microfluidic channel. Among impo...
This study investigates the design, construction and instrumentation of an experimental microchannel...
The effect of different contact angle on triangular shaped interrupted microchannel performance was ...
In this paper, we analyze the consequences of substrate wettability on the convective heat transfer ...
Analysis is presented for conjugate heat transfer in a parallel-plate microchannel. Axial conduction...
Accurate modelling of convective heat transfer in micro/nano gas flows is critical for many applicat...
In this study, effect of surface roughness on convective heat transfer and fluid flow in two dimensi...
This study numerically investigates the effect of first and second-order velocity slip and temperatu...
Due to the existence of a velocity slip and temperature jump on the solid walls, the heat transfer i...
The assumption that a liquid adheres to a solid boundary ("no-slip" boundary condition) is one of th...
A bibliographical review on the convective heat transfer through microchannels is presented. The ava...
This dissertation presents an experimental investigation of laminar gas flow and heat transfer throu...
This article provides numerically study of the thermal performance of a microchannel, cooled with ei...
In this paper we examine the effect of contact angle (or surface wettability) on the convective heat...
An experimental investigation has been performed on the laminar convective heat transfer and pressur...
In this paper we explore issues in designing a heat exchanger for a microfluidic channel. Among impo...
This study investigates the design, construction and instrumentation of an experimental microchannel...
The effect of different contact angle on triangular shaped interrupted microchannel performance was ...
In this paper, we analyze the consequences of substrate wettability on the convective heat transfer ...
Analysis is presented for conjugate heat transfer in a parallel-plate microchannel. Axial conduction...
Accurate modelling of convective heat transfer in micro/nano gas flows is critical for many applicat...
In this study, effect of surface roughness on convective heat transfer and fluid flow in two dimensi...
This study numerically investigates the effect of first and second-order velocity slip and temperatu...
Due to the existence of a velocity slip and temperature jump on the solid walls, the heat transfer i...
The assumption that a liquid adheres to a solid boundary ("no-slip" boundary condition) is one of th...
A bibliographical review on the convective heat transfer through microchannels is presented. The ava...
This dissertation presents an experimental investigation of laminar gas flow and heat transfer throu...
This article provides numerically study of the thermal performance of a microchannel, cooled with ei...