Title of article
Infrared temperature measurements on solar trough absorber tubes
Author/Authors
Markus Pfa¨nder a، نويسنده , , Eckhard Lu¨ pfert، نويسنده , , Paul Pistor، نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2007
Pages
7
From page
629
To page
635
Abstract
The temperature distribution on solar trough absorber tubes determines thermal losses and hotspots can lead to material stress and
limit absorber tube lifetime. The concentrated solar radiation, however, makes it difficult to determine the temperature on solar absorbers.
Temperature sensors that require contact to the measurement object are not appropriate and even pyrometry fails, when external
light sources interfere. Only solar-blind pyrometry offers reliable temperature readings without perturbation through reflected solar radiation.
This paper presents two concepts for a pyrometric solar-blind measurement on solar trough absorber tubes. One solar-blind
approach is a spectral measurement range in regions, where the solar spectrum shows gaps due to the discrete absorption of the atmosphere.
Another possibility for a solar-blind pyrometric temperature measurement results from the optical behavior, i.e. the distinct angle
dependence of the directional reflectance and emittance of a typical selective trough absorber coating. First experimental results are
shown and the accuracy and performance advantages and disadvantages of the setups are reported and discussed.
2006 Elsevier Ltd. All rights reserved
Keywords
not only becauseit determines the thermal losses , but also because hot spotsand temperature gradients provoke stress in the tube andcan cause material failure especially on troughs for directsteam generation.However , Solar-blind , Pyrometry , Infrared , temperature measurement , Parabolic trough1. IntroductionThe surface temperature distribution on solar troughabsorber tubes is an important parameter , the concentrated radiationand the design of the absorber tube complicate the temperaturemeasurement. Temperature sensors that require contactto the measurement object are not appropriate forsurface measurements
Journal title
Solar Energy
Serial Year
2007
Journal title
Solar Energy
Record number
939797
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