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Experimental Investigation of Coupled Thermo-Hydraulic Properties of Glacial Tills
Tugce Baser
, Kiseok Kim
, Elisabeth Tarpey
,
Roman Makhnenko
,
Andrew Stumpf
Civil and Environmental Engineering
National Center for Supercomputing Applications (NCSA)
Institute for Sustainability, Energy, and Environment
Illinois State Geological Survey
Research output
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peer-review
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Keyphrases
Accurate Characterization
33%
Borehole
16%
Constitutive Relationship
16%
Core Flooding
16%
Geomaterials
16%
Geothermal Site
16%
Geothermal System
16%
Glacial Till
100%
Hydraulic Conductivity
16%
Hydraulic Properties
100%
In-situ Stress
16%
Increased Temperature
16%
Intrinsic Permeability
16%
Lateral Stress
16%
Saturated Geomaterial
16%
Saturated Specimens
16%
Temperature Effect
33%
Thermal Gradient
16%
Thermal-hydraulics
100%
Engineering
Borehole
14%
Constitutive Relationship
14%
Core Samples
14%
Experimental Investigation
100%
Field Condition
14%
Geothermal System
14%
Hydraulics
100%
In Situ Stress
14%
Increasing Temperature
14%
Input Parameter
14%
Intrinsic Permeability
14%
Lateral Stress
14%
Thermal Gradient
14%
Earth and Planetary Sciences
Borehole
16%
Geothermal System
16%
Hydraulic Conductivity
16%
Hydraulic Property
100%
Natural Material
33%