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Prestack parallel modeling of dispersive and attenuative medium
How Wei Chen
Department of Earth Sciences
Research output
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Article
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peer-review
2
Scopus citations
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Keyphrases
Parallel Performance
100%
Parallelizing
100%
Attenuative
100%
Parallel Modeling
100%
Pre-stack
100%
High Performance
50%
Computation Time
50%
Seismic Signal
50%
High Bandwidth
50%
Travel Time
50%
Computational Results
50%
Multiprocessor
50%
Large-scale Problems
50%
Pseudospectral Method
50%
HPC Cluster
50%
Wave Field
50%
Survey Area
50%
Seismograms
50%
Wide-angle Seismic
50%
Parallel Simulation
50%
Linear Speedup
50%
Low Latency
50%
Synthetic Instances
50%
Waveform Amplitude
50%
Computing Platform
50%
Crustal Velocity
50%
Anelastic Effect
50%
Parallel Implementation
50%
Crustal Attenuation
50%
CPU-intensive
50%
Interprocessor Communications
50%
Propagation Effects
50%
Deep Crustal Structure
50%
Pseudospectrum
50%
Physical Dispersion
50%
Multiprocessor Environment
50%
Q-shift
50%
Viscoacoustic
50%
Dispersion Phenomenon
50%
Attenuating Media
50%
Temporal Shift
50%
Distributed Memory multiprocessors
50%
Seismic Waveform Modeling
50%
Multiple Shot
50%
Dispersive Media
50%
Shot Gather
50%
Staggered Grid
50%
Marine Data
50%
Computer Science
Computation Time
100%
multi-processor
100%
Parallel Simulation
100%
Linear Speedup
100%
Parallel Implementation
100%
Computing Platform
100%
Data Application
100%
Distributed Memory (Multiprocessor)
100%
Central Processing Unit
100%
Computation-To-Communication Ratio
100%
Engineering
Field Data
100%
Computation Time
100%
Observables
100%
Communication Processor
100%
Fine Detail
100%
Survey Area
100%
Finite Difference Method
100%
Central Processing Unit
100%
Earth and Planetary Sciences
Travel Time
100%
Crustal Structure
100%
Seismogram
100%
Finite Difference Method
100%
Waveform Modeling
100%
Distributed Memory
100%