The effect of rank and lithotype on coal wettability and its application to coal relative permeability models

Shilo Mohoney, Rufford, Thomas, Anastasia Dmyterko, Rudolph, Victor and Karen Steel (2015). The effect of rank and lithotype on coal wettability and its application to coal relative permeability models. In: SPE Asia Pacific Unconventional Resources Conference and Exhibition, Brisbane, QLD, Australia, (). 9-11 November 2015. doi:10.2118/176870-MS


Author Shilo Mohoney
Rufford, Thomas
Anastasia Dmyterko
Rudolph, Victor
Karen Steel
Title of paper The effect of rank and lithotype on coal wettability and its application to coal relative permeability models
Conference name SPE Asia Pacific Unconventional Resources Conference and Exhibition
Conference location Brisbane, QLD, Australia
Conference dates 9-11 November 2015
Convener Stephen Kelemen
Journal name Society of Petroleum Engineers - SPE Asia Pacific Unconventional Resources Conference and Exhibition
Place of Publication Richardson, TX, United States
Publisher The Society of Petroleum Engineers
Publication Year 2015
Sub-type Fully published paper
DOI 10.2118/176870-MS
ISBN 9781613993880
Total pages 10
Language eng
Formatted Abstract/Summary
We report the effect of rank and lithotype on the wettability of artificial cleat channels in five coals from the Bowen Basin with ranks in the Rmax% range 0.98-1.91%. Wettability was assessed by measuring contact angles of air and water in the artificial cleats using a microfluidic Cleat Flow Cell (CFC) instrument. The artificial cleats were produced by reactive ion etching and had widths in the range 20–40 µm that replicate the width and shape of some natural coal cleats under sub-surface reservoir conditions. These model cleats were developed to allow systematic laboratory investigations of water and gas relative permeability behaviour.

Imbibition and drainage experiments were performed in the artificial channels using air and 0.1 %wt. fluorescein in fresh tap water to observe contact angles, the entry pressure of the air-water and water-air interface to the channel, and the pressure at which the channel was filled by the displacing fluid. Relative contact angles on the coal surface of 110 -140° were determined from images collected in the imbibition experiments. A trend of increasing contact angle with coal rank was observed. The low rank coal exhibited smaller contact angles and lower breakthrough pressures than the higher rank coal samples. In the drainage experiments the injection air displaced the water but left a residual liquid film on cleat walls across dull, inertinite rich bands. This residual film was not observed in the bright, vitrinite rich bands. The results of this study may provide the basis to consider an improved relative permeability model that explicitly accounts for wettability and the effect of coal rank.
Keyword Lithotype
Cleats
Contact angle
Coal seam gas
Wettability
Q-Index Code EX
Q-Index Status Provisional Code
Institutional Status UQ

 
Versions
Version Filter Type
Citation counts: Scopus Citation Count Cited 0 times in Scopus Article
Google Scholar Search Google Scholar
Created: Mon, 30 Nov 2015, 19:00:25 EST by Dr Thomas Rufford on behalf of School of Chemical Engineering