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Single-scale wavelet representation of turbulence dynamics: Formulation and Navier-Stokes regularity
Jacques Lewalle
Department of Mechanical & Aerospace Engineering
Research output
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Contribution to journal
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Article
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peer-review
2
Scopus citations
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Dive into the research topics of 'Single-scale wavelet representation of turbulence dynamics: Formulation and Navier-Stokes regularity'. Together they form a unique fingerprint.
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Mathematics
Boundary conditions
17%
Coefficient
13%
Euler
22%
Evaluation
19%
Exponent
20%
Formulation
50%
Interaction
38%
Navier-Stokes
83%
Navier-Stokes Equations
43%
Regularity
55%
Scaling
22%
Singularity
37%
Spectral Resolution
38%
Term
28%
Turbulence
89%
Wavelet Coefficients
100%
Wavelets
70%
Physics & Astronomy
boundary conditions
14%
coefficients
42%
evaluation
12%
exponents
15%
formulations
54%
interactions
15%
Navier-Stokes equation
38%
regularity
82%
scaling
13%
spectral resolution
20%
turbulence
60%
Engineering & Materials Science
Boundary conditions
30%
Navier Stokes equations
78%
Spectral resolution
57%
Turbulence
71%