Mercury intrusion porosimetry (MIP) measurements are widely used to determine pore throat size distribution (PSD) curves of porous materials. The pore throat size of porous materials has been used to estimate their compressive strength and air permeability. However, the effect of sample size on the determined PSD curves is often overlooked. In pursuit of a better understanding of the effect of sample size on mercury intrusion into porous materials, a combined experimental and numerical approach was applied. Quartz sand and epoxy resin were mixed to form artificial sandstone. Digital microstructures of the sandstone were obtained by using X-ray computed tomography (CT scan) technique. PSD curves of the artificial sandstone with different sam...
A 3D representation of the internal structure and fabric of sedimentary rocks is of paramount intere...
A 3D representation of the internal structure and fabric of sedimentary rocks is of paramount intere...
Mercury intrusion porosimetry (MIP) has been widely used to investigate the pore structure of cement...
Mercury intrusion porosimetry (MIP) measurements are widely used to determine pore throat size distr...
International audienceThe pore size distribution (PSD) plays an important role in the hydro-mechanic...
International audienceThe pore size distribution (PSD) plays an important role in the hydro-mechanic...
The pore size distribution (PSD) plays an important role in the hydro-mechanical behaviour of porous...
ABSTRACT Mercury porosimetry is often used to characterize the pore (throat) size distribution of po...
Mercury intrusion porosimetry is a suitable technique to determine pore size, particle size as well ...
Substantial progress has been recently achieved in the development of a clean alternative tomercury ...
A large number of studies have been conducted to investigate the pore structure of cement-based mate...
A large number of studies have been conducted to investigate the pore structure of cement-based mate...
The typical approach to analysing raw data, from common pore characterization methods such as gas so...
Mercury intrusion porosimetry (MIP) has been widely used to investigate the pore structure of cement...
Interpretation of the relationship between heterogeneity and the flow in porous media is very import...
A 3D representation of the internal structure and fabric of sedimentary rocks is of paramount intere...
A 3D representation of the internal structure and fabric of sedimentary rocks is of paramount intere...
Mercury intrusion porosimetry (MIP) has been widely used to investigate the pore structure of cement...
Mercury intrusion porosimetry (MIP) measurements are widely used to determine pore throat size distr...
International audienceThe pore size distribution (PSD) plays an important role in the hydro-mechanic...
International audienceThe pore size distribution (PSD) plays an important role in the hydro-mechanic...
The pore size distribution (PSD) plays an important role in the hydro-mechanical behaviour of porous...
ABSTRACT Mercury porosimetry is often used to characterize the pore (throat) size distribution of po...
Mercury intrusion porosimetry is a suitable technique to determine pore size, particle size as well ...
Substantial progress has been recently achieved in the development of a clean alternative tomercury ...
A large number of studies have been conducted to investigate the pore structure of cement-based mate...
A large number of studies have been conducted to investigate the pore structure of cement-based mate...
The typical approach to analysing raw data, from common pore characterization methods such as gas so...
Mercury intrusion porosimetry (MIP) has been widely used to investigate the pore structure of cement...
Interpretation of the relationship between heterogeneity and the flow in porous media is very import...
A 3D representation of the internal structure and fabric of sedimentary rocks is of paramount intere...
A 3D representation of the internal structure and fabric of sedimentary rocks is of paramount intere...
Mercury intrusion porosimetry (MIP) has been widely used to investigate the pore structure of cement...