Abstract
Thermal efficiency of buildings requires a perfect knowledge of the thermal prop-erties of materials which compose building envelope. To this end, the use of reli-able testing methods for thermal diffusivity measurements of buildings materials is fundamental. Currently, periodic methods are based on the exploitation of fun-damental harmonic, resulting from Fourier series decomposition. The objective of this paper is to demonstrate that fundamental is necessary and sufficient in or-der to characterize the thermal diffusivity. For those purposes, a sensitive analy-sis of harmonic contributions from Fourier series is supported by a substantial experimental campaign. Moreover, some dissymmetrical tests were carried out in order to highlight the preponderant influence of fundamental, compared to other harmonics. The analysis of contributions of harmonics shows that the evolution of thermal diffusivity is very slightly dependent on the number of harmonics. Then, the exploitation of fundamental is necessary and sufficient, and the charac-terization test protocol is validated by experimental results and by the compari-son with commonly accepted values for these kinds of materials.
Author supplied keywords
Cite
CITATION STYLE
Promis, G., Douzane, O., Hamed, H. B., & Langlet, T. (2018). Sensitive analysis of harmonics on the assessment of thermal diffusivity of building materials of a periodic state. Thermal Science, 22(1), 223–236. https://doi.org/10.2298/tsci150702144p
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.