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Large-scale urbulence simulation on the Navier-Stokes computer
M. E. Hayder
, W. S. Flannery
,
M. G. Littman
,
D. M. Nosenchuck
, S. A. Orszag
Mechanical & Aerospace Engineering
Civil & Environmental Engineering
Keller Center for Innovation in Engineering Education
Princeton Materials Institute
Research output
:
Contribution to journal
›
Article
›
peer-review
4
Scopus citations
Overview
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Engineering
Active Control
66%
Local Memory
66%
Conservation of Mass
33%
Dimensional Array
33%
Primary Function
33%
Direct Simulation
33%
Computer Memory
33%
Control Scheme
33%
Initial and Boundary Condition
33%
Earth and Planetary Sciences
Supercomputer
100%
Active Control
66%
Continuum Flow
33%
Navier-Stokes Equation
33%
Memory (Computers)
33%
Architecture (Computers)
33%
Water Vehicles
33%
Keyphrases
Local Memory
40%
Arithmetic Logic Unit
20%
Active Control Method
20%
Turbulence Simulation
20%
Computational Physics
20%
Computer Architecture
20%
Continuum Flow
20%
Single Node
20%
Coupled Nonlinear Partial Differential Equations
20%
Direct Simulation
20%
Momentum Conservation
20%
Non-simple
20%
Software Benchmark
20%
Computer Memory
20%
Complex Flow
20%
Physics
Continuum Flow
50%
Computational Physics
50%
Navier-Stokes Equation
50%
Architecture (Computers)
50%
Memory (Computers)
50%
Fluid Flow
50%