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DSMC Analysis of DiskSat in Very Low Earth Orbits
Máximo Castillo Rivas
, Diego Vera Sepúlveda
, Rodrigo Cassineli Palharini
Research output
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Contribution to journal
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Article
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peer-review
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Dive into the research topics of 'DSMC Analysis of DiskSat in Very Low Earth Orbits'. Together they form a unique fingerprint.
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Keyphrases
Monte Carlo Analysis
100%
Direct Simulation Monte Carlo
100%
Very Low Earth Orbit
100%
Aerodynamics
66%
High Temperature
33%
Computational Results
33%
Mean Free Path
33%
Flow Regime
33%
Particle Method
33%
Largest Mean
33%
Aerothermodynamics
33%
Wake Region
33%
Flow Field Structure
33%
Knudsen number
33%
Underexploited
33%
Free Molecular Regime
33%
Orbital Lifetime
33%
Orbital Stability
33%
Integration Costs
33%
Launcher
33%
Provider Integration
33%
Power-to-weight Ratio
33%
Aerospace Sector
33%
High Power
33%
Planar Geometry
33%
Rarefied Gas Flow
33%
Continuum Hypothesis
33%
Shock Layer
33%
Containerization
33%
INIS
simulation
100%
altitude
100%
monte carlo method
100%
orbits
100%
aerodynamics
33%
hypothesis
16%
interactions
16%
power
16%
stability
16%
particles
16%
calculation methods
16%
layers
16%
containers
16%
satellites
16%
interfaces
16%
cost
16%
expansion
16%
investigations
16%
lifetime
16%
geometry
16%
knudsen number
16%
Engineering
Direct Simulation
100%
Low Earth Orbit
100%
Monte Carlo Analysis
100%
Aerodynamics
66%
Mean Free Path
33%
Flow Regime
33%
Mass Ratio
33%
Aerothermodynamics
33%
Knudsen Number
33%
Continuum Hypothesis
33%
Shock Layer
33%
Molecular Regime
33%
Physics
Earth Orbit
100%
Monte Carlo Method
100%
Aerodynamics
66%
Mean Free Path
33%
Mass Ratio
33%
Aerothermodynamics
33%
Orbital Lifetime
33%
Fairings
33%
Knudsen Flow
33%
Shock Layer
33%