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Numerical simulation of the flow in the carotid bifurcation
L. D. Jou, S. A. Berger
Academic Institute
Research output
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Contribution to journal
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Article
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peer-review
32
Scopus citations
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Dive into the research topics of 'Numerical simulation of the flow in the carotid bifurcation'. Together they form a unique fingerprint.
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Mathematics
Bifurcation
55%
Numerical Simulation
54%
Pulsatile Flow
48%
Internal
47%
Angle
24%
Secondary Flow
22%
Systole
22%
Artificial Compressibility
21%
Arteries
20%
Flow Rate
18%
Pressure Gradient
18%
Waveform
17%
Streamlines
17%
Steady Flow
15%
Inertia
15%
Vortex
15%
Dilation
14%
Cross section
14%
Gradient
11%
Three-dimensional
10%
Closed
8%
Engineering & Materials Science
Pulsatile flow
100%
Shear walls
83%
Secondary flow
42%
Steady flow
41%
Compressibility
40%
Computer simulation
39%
Pressure gradient
39%
Vortex flow
31%
Pipe
27%
Flow rate
27%
Physics & Astronomy
shear
32%
simulation
27%
systole
18%
dividers
15%
secondary flow
14%
steady flow
13%
arteries
13%
pressure gradients
12%
inertia
11%
compressibility
11%
waveforms
10%
flow velocity
9%
vortices
8%
gradients
7%
cross sections
7%
Chemistry
Flow
46%
Simulation
45%
Shear
44%
Inertia
17%
Velocity
10%
Flow Kinetics
9%
Pressure
6%