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Mechanics of methane bubbles in consolidated aquatic muds
Regina Katsman
Department of Marine Geosciences
Research output
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Contribution to journal
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Review article
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peer-review
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Dive into the research topics of 'Mechanics of methane bubbles in consolidated aquatic muds'. Together they form a unique fingerprint.
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Keyphrases
Methane Bubble
100%
Single Bubble
100%
Gassy Sediments
66%
Bubble Size Distribution
66%
Acoustic Applications
66%
Bubble Pressure
66%
Water Column
33%
Methane
33%
Distribution Pattern
33%
Spatial Location
33%
Remote Sensing
33%
Mechanical Properties
33%
Physical Characteristics
33%
Complete Life Cycle
33%
Numerical Modeling
33%
Analytical Modeling
33%
Effective Medium
33%
Lab Experiment
33%
Aquatic Sediment
33%
Gas Content
33%
Pore Water
33%
Greenhouse Gas
33%
Effective Medium Theory
33%
CH4 Flux
33%
CH4 Gas
33%
Inner Pressure
33%
Solute Exchange
33%
Linear Elastic Fracture Mechanics
33%
Pressure Evolution
33%
Bubble Shape
33%
Pore Size
33%
Geohazards
33%
Media Theory
33%
Mechanical Characteristics
33%
Gas Retention
33%
Bubble Pairs
33%
Fracture Mechanics
33%
Earth's Climate
33%
Dynamic Water
33%
Water Load
33%
Bubble Growth Rate
33%
Load Effect
33%
Engineering
Methane
100%
Macroscale
50%
Single Bubble
50%
Bubble Size
33%
Microscale
33%
Field Observation
16%
Gas Content
16%
Spatial Location
16%
Bubble Shape
16%
Bubble Growth
16%
Entire Life Cycle
16%
Linear Elastic Fracture Mechanic
16%
Load Effect
16%
Greenhouse Gas
16%
Earth and Planetary Sciences
Methane
100%
Upscaling
50%
Microbalance
33%
Media Theory
33%
Water Column
16%
Field Experiment
16%
Life Cycle
16%
Porewater
16%
Greenhouse Gas
16%
Fracture Mechanics
16%
Remote Sensing
16%