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DiSECCS: Diagnostic Seismic toolbox for the Efficient Control of CO2 Storage
Chapman, Mark
(Principal Investigator)
School of Geosciences
Overview
Fingerprint
Research output
(3)
Project Details
Status
Finished
Effective start/end date
11/09/13
→
10/03/17
Funding
UK central government bodies/local authorities, health and hospital authorities:
£294,091.00
View all
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Fingerprint
Explore the research topics touched on by this project. These labels are generated based on the underlying awards/grants. Together they form a unique fingerprint.
bulk modulus
Earth & Environmental Sciences
100%
Bulk Modulus
Chemical Compounds
93%
rocks
Physics & Astronomy
83%
immiscible fluid
Earth & Environmental Sciences
81%
Capillarity
Chemical Compounds
80%
fluid
Earth & Environmental Sciences
77%
Ultrasonic Velocity
Chemical Compounds
77%
Flow
Chemical Compounds
74%
Research output
Research output per year
2015
2015
2017
2018
2018
3
Article
Research output per year
Research output per year
Pressure-varying CO 2 distribution affects the ultrasonic velocities of synthetic sandstones
Papageorgiou, G.
,
Falcon-suarez, I.
,
Chapman, M.
&
Best, A.
,
1 Jul 2018
,
In:
International Journal of Greenhouse Gas Control.
74
,
p. 1-8
Research output
:
Contribution to journal
›
Article
›
peer-review
Open Access
File
Ultrasonic velocity
100%
Ultrasonic Velocity
85%
Sandstone
74%
fluid pressure
70%
sandstone
47%
Wave-propagation in rocks saturated by two immiscible fluids
Papageorgiou, G.
&
Chapman, M.
,
24 Mar 2017
,
In:
Geophysical Journal International.
Research output
:
Contribution to journal
›
Article
›
peer-review
Open Access
File
immiscible fluid
100%
Capillarity
98%
Seismic Wave
77%
rocks
68%
wave propagation
67%
Multifluid squirt flow and hysteresis effects on the bulk modulus - water saturation relationship
Papageorgiou, G.
&
Chapman, M.
,
1 Nov 2015
,
In:
Geophysical Journal International.
203
,
2
,
p. 814-817
Research output
:
Contribution to journal
›
Article
›
peer-review
Open Access
File
Bulk Modulus
100%
bulk modulus
96%
hysteresis
75%
Hysteresis
72%
saturation
53%