König, Jörg; Moller, Sebastian; Granzow, Nicolai; Cierpka, Christian:
On the application of a supercontinuum white light laser for simultaneous measurements of temperature and velocity fields using thermochromic liquid crystals
In: Experimental thermal and fluid science : international journal of experimental heat transfer, thermodynamics and fluid mechanics ; ETF science, Vol. 109 (2019), 13 Seiten, Article 109914
2019Journal article in JournalClosed Access
Technische Universität Ilmenau (1992-) » Department of Mechanical Engineering (1992-) » Institute of Thermodynamics and Fluid Dynamics (1992-) » Fachgebiet Technische Thermodynamik (2016-)
Title in English:
On the application of a supercontinuum white light laser for simultaneous measurements of temperature and velocity fields using thermochromic liquid crystals
Author:
König, JörgTU
GND
1063385547
ORCID
0000-0002-7832-9223ORCID iD
SCOPUS
36949610800
Other
connected with university
corresponding author
;
Moller, SebastianTU
GND
1210275899
ORCID
0000-0003-0913-8412ORCID iD
SCOPUS
57209911229
Other
connected with university
;
Granzow, Nicolai
SCOPUS
26867641200
;
Cierpka, ChristianTU
GND
138160945
ORCID
0000-0002-8464-5513ORCID iD
ResearcherID
C-2725-2011
SCOPUS
21739343000
Other
connected with university
Year of publication:
2019
Open-Access-Way of publication:
Closed Access
Scopus ID
PPN:
Language of text:
English
Media:
online resources
Type of resource:
Text
Licence type:
All rights reserved
Peer Reviewed:
Yes
Part of statistic:
Yes

Abstract in English:

Simultaneous velocity and temperature measurements using thermochromic liquid crystals (TLC) as tracer particles are discussed, with regard to measuring range, uncertainty and spatial resolution. For the first time, a supercontinuum laser is used to illuminate these particles, which shall later be used for the characterization of the momentum and heat transfer in Rayleigh-Bénard cells with high aspect ratio using particle image velocimetry (PIV) and particle image thermometry (PIT). Light scattered from the TLCs is analyzed by spectrometer measurements, revealing its general scattering characteristics depending on the angle between the light sheet plane and the viewing axis. It is shown that white light sources with continuous spectral characteristic and a slightly higher fraction of light in the red wavelength range perform well, thereby the supercontinuum white light laser can be used, even though it has a cut-in wavelength of about 475 nm. The numerical aperture of the detection optics and chromatic aberrations of the laser light significantly affect the temperature sensitivity and dynamic range of the color of the TLCs. This may cause an effective temperature sensitivity range of about one-tenth of their nominal range, particularly at large angles between light sheet plane and viewing axis, as usually applied in PIV. A simultaneous velocity and temperature measurement in a Rayleigh-Bénard cell experimentally validates that the use of the supercontinuum laser allows for reliable simultaneous PIV and PIT measurements with high spatial resolution of less than 500 [my]m in out-of-plane direction, on condition that an appropriate two-dimensional calibration is applied.