The main objective of this thesis is to characterize and investigate single-phase liquid flow in microchannels, and can be divided into two parts: analytical modeling and experimental investigation. In the analytical part, velocity distribution and Darcy friction factor of liquid flow in both parallel-plate and rectangular microchannels were revised theoretically by taking into account the effects of slip boundary conditions as well as the aspect ratio of the channels. The combined effects of changing relative spacing, eccentricity, and viewing directions on the wetting conditions of the fabricated micropillar surfaces were experimentally investigated. The equilibrium 3D shape of the droplet on anisotropic surfaces was also examined. The ...
Hydrophobicity has been widely reported for its superior behavior in drag reduction, self-cleaning, ...
Wettability is an important parameter in micro-scale flow patterns. Previous research has usually be...
Thesis (Ph.D.)--Boston UniversityThe development of soft lithography techniques for fabricating micr...
This paper experimentally investigates the effects of microhole eccentricity on the slip lengths of ...
This paper experimentally investigates the effects of microhole eccentricity on the slip lengths of ...
The effects of rib-patterned surfaces and surface wettability on liquid flow in microchannels were e...
The effects of rib-patterned surfaces and surface wettability on liquid flow in microchannels were e...
We present both experimental results and numerical simulations of the fluid dynamics of a droplet pi...
International audienceThis paper presents experimental results concerning water flow in smooth and r...
We present both experimental results and numerical simulations of the fluid dynamics of a droplet pi...
In this paper, we describe microchannel fluid behavior using a numerical model based on micropolar f...
Wetting effects form a dimension of fluid dynamics that becomes predominant, precisely controllable ...
This paper presents a systematic analysis of the sensitivity of design parameters of a microchannel ...
In the recent years there has been an increasing interest in the study of two-phase flows in low Bon...
Two immiscible fluids flowing in microchannels are essential for microdevices to achieve efficient t...
Hydrophobicity has been widely reported for its superior behavior in drag reduction, self-cleaning, ...
Wettability is an important parameter in micro-scale flow patterns. Previous research has usually be...
Thesis (Ph.D.)--Boston UniversityThe development of soft lithography techniques for fabricating micr...
This paper experimentally investigates the effects of microhole eccentricity on the slip lengths of ...
This paper experimentally investigates the effects of microhole eccentricity on the slip lengths of ...
The effects of rib-patterned surfaces and surface wettability on liquid flow in microchannels were e...
The effects of rib-patterned surfaces and surface wettability on liquid flow in microchannels were e...
We present both experimental results and numerical simulations of the fluid dynamics of a droplet pi...
International audienceThis paper presents experimental results concerning water flow in smooth and r...
We present both experimental results and numerical simulations of the fluid dynamics of a droplet pi...
In this paper, we describe microchannel fluid behavior using a numerical model based on micropolar f...
Wetting effects form a dimension of fluid dynamics that becomes predominant, precisely controllable ...
This paper presents a systematic analysis of the sensitivity of design parameters of a microchannel ...
In the recent years there has been an increasing interest in the study of two-phase flows in low Bon...
Two immiscible fluids flowing in microchannels are essential for microdevices to achieve efficient t...
Hydrophobicity has been widely reported for its superior behavior in drag reduction, self-cleaning, ...
Wettability is an important parameter in micro-scale flow patterns. Previous research has usually be...
Thesis (Ph.D.)--Boston UniversityThe development of soft lithography techniques for fabricating micr...