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Stephen B Pope
HIndex: 41
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Numerical analysis
Large eddy simulation
Stochastic process
Shear flow
Kinetics
Stochastic differential equation
Second-order logic
Convection–diffusion equation
Vector field
Turbulence
Mixed model
Chemical reaction
Chemical kinetics
Reynolds number
Differential equation
Monte Carlo method
Fluid dynamics
Combustion
Dimensionality reduction
Methane
Direct numerical simulation
Mathematical model
Local extinction
Mixed layer
Probability density function
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Numerical analysis
Large eddy simulation
Stochastic process
Shear flow
Kinetics
Stochastic differential equation
Second-order logic
Convection–diffusion equation
Vector field
Turbulence
Mixed model
Chemical reaction
Chemical kinetics
Reynolds number
Differential equation
Monte Carlo method
Fluid dynamics
Combustion
Dimensionality reduction
Methane
Direct numerical simulation
Mathematical model
Local extinction
Mixed layer
Probability density function
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Match this author profile with one of the following researchers:
Author Name
Affiliation
Papers
Stephen B Pope
Imperial College London
288
Stephen B Pope
Cambridge University Press
1
Stephen B Pope
University Of Adelaide
1
Stephen B Pope
Tsinghua University
1
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