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A new analytical solution for assessing climate change impacts on subsurface temperature
Barret L. Kurylyk
, Kerry T.B. Macquarrie
科研成果
:
期刊稿件
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同行评审
43
引用 (Scopus)
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探究 'A new analytical solution for assessing climate change impacts on subsurface temperature' 的科研主题。它们共同构成独一无二的指纹。
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Keyphrases
Climate Change Impacts
100%
Subsurface Temperature
100%
Exponential Function
100%
New Analytical Solution
100%
Groundwater Temperature
50%
Analytical Solution
50%
Forward Model
50%
Accuracy Improvement
50%
Linear Function
50%
Temperature-depth Profiles
50%
Surface Warming
50%
Subsurface Environment
50%
Classic Solution
50%
Air Temperature Anomaly
50%
Groundwater Flow
25%
Climate Change
25%
Groundwater Discharge
25%
Recharge
25%
Numerical Methods
25%
Temperature Data
25%
Temperature Profile
25%
Future Climate Change
25%
Japan
25%
Species Distribution
25%
Surface Temperature
25%
Water Quality Parameters
25%
Shallow Subsurface
25%
Intergovernmental Panel on Climate Change
25%
Sutra
25%
Tokyo
25%
Borehole Temperature
25%
Thermal Perturbation
25%
Climate Model Projections
25%
Atmospheric Climate
25%
Exponential Boundary Condition
25%
Surface Environment
25%
Hole Profile
25%
Sendai
25%
Advection Equation
25%
Surficial
25%
Finite Element Code
25%
Transient Conduction
25%
Temperature History
25%
Deep Subsurface
25%
Engineering
Climate Change
100%
Subsurface
100%
Exponential Function
57%
Boundary Condition
42%
Simulation Result
28%
Borehole
28%
Initial Condition
28%
Air Temperature
28%
Depth Profile
28%
Forward Model
28%
Linear Function
28%
Finite Element Method
14%
Transients
14%
Shallower
14%
Numerical Methods
14%
Advection
14%
Intergovernmental Panel on Climate Change
14%
Temperature Profile
14%
Initial and Boundary Condition
14%
Temperature Data
14%
One Dimensional
14%
Measured Temperature
14%
Japan
14%
Earth and Planetary Sciences
Climate Change Impact
100%
Boundary Condition
100%
Climate Change
50%
Borehole
50%
Air Temperature
50%
Temperature Anomaly
50%
Atmospherics
25%
Groundwater Flow
25%
Advection
25%
Climate Modeling
25%
Temperature Profile
25%
Intergovernmental Panel on Climate Change
25%
Mathematical Method
25%
Japan
25%