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Measurement of temperature field of a Rayleigh-Bénard convection using two-color laser-induced fluorescence
J. Sakakibara, R. J. Adrian
Research output
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Contribution to journal
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Article
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peer-review
73
Scopus citations
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Dive into the research topics of 'Measurement of temperature field of a Rayleigh-Bénard convection using two-color laser-induced fluorescence'. Together they form a unique fingerprint.
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Mathematics
Laser-induced Fluorescence
100%
Temperature Field
60%
Rayleigh
52%
Convection
47%
CCD Camera
44%
RMS Errors
43%
Color
39%
High Resolution
29%
Post-processing
29%
Random Error
28%
Instantaneous
26%
Water
24%
Refinement
21%
Convolution
19%
Physics & Astronomy
laser induced fluorescence
49%
convection
41%
temperature distribution
39%
color
34%
random errors
30%
blurring
30%
CCD cameras
25%
convolution integrals
25%
high resolution
14%
sensitivity
14%
water
13%
Engineering & Materials Science
Fluorescence
55%
Convection
47%
Temperature distribution
39%
Lasers
36%
Color
34%
Random errors
30%
CCD cameras
28%
Convolution
23%
Water
13%
Chemical Compounds
Laser Induced Fluorescence Spectroscopy
53%
Error
36%
Application
7%