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Stalactite growth as a free-boundary problem
Martin B. Short
,
James C. Baygents
, Raymond E. Goldstein
Chemical & Environmental Engr
Research output
:
Contribution to journal
›
Article
›
peer-review
42
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Scopus citations
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Keyphrases
Free Boundary Problem
100%
Stalactite
100%
Growth Rate
14%
Law
14%
Hanging
14%
Statistical Analysis
14%
Outgassing
14%
Carbon Dioxide
14%
Fluid Dynamics
14%
Calcium Carbonate Precipitation
14%
Surface Evolution
14%
Cavern
14%
Non-axisymmetric
14%
Time-scale Separation
14%
Mathematical Form
14%
Speleothem
14%
Stokes Flow
14%
Free Boundary
14%
Fluid Layer
14%
Geometric Growth
14%
Local Thickness
14%
Average Shape
14%
Carbonate Chemistry
14%
Growth Law
14%
Carbonate Carbon
14%
Local Growth
14%
Strong Separation
14%
Thin-film Fluid
14%
Limestone Cave
14%
Geometric Law
14%
Growing Surface
14%
Platonic Ideals
14%
Boundary Calculation
14%
Physics
Free Boundary
100%
Thin Films
66%
Outgassing
33%
Flow Velocity
33%
Stokes Flow
33%
Carbon Dioxide
33%
Fluid Dynamics
33%
Numerical Analysis
33%
Limestone
33%
Earth and Planetary Sciences
Stalactite
100%
Free Boundary
100%
Calcium Carbonate
28%
Thin Films
28%
Flow Velocity
14%
Fluid Dynamics
14%
Outgassing
14%
Speleothem
14%
Stokes Flow
14%
Carbon Dioxide
14%
Degassing
14%
Material Science
Thin Films
100%
Carbon Dioxide
50%
Fluid Dynamics
50%
Limestone
50%