A simultaneous characterization and uncertainty analysis of thermal conductivity and diffusivity of bio-insulate material "palm date Wood" obtained from a periodic method

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Abstract

A periodic method is used to determine simultaneously both thermal conductivity and diffusivity of various insulate materials at room temperature. The sample is placed between two metallic plates and temperature modulation is applied on the front side of one of the metallic plates. The temperature at the front and rear sides of both plates is measured and the experimental transfer function is calculated. The theoretical thermal heat transfer function is calculated by the quadripole method. Thermal conductivity and diffusivity are simultaneously identified from both real and imaginary parts of the experimental transfer function. The thermophysical parameters of several wood scale samples obtained from palm wood trees and common trees with unknown thermal properties (E) with different thicknesses were studied. The value identified for the thermal conductivity 0.03 Wm-1 K-1 compared with different insulate solid material such as glass, glass-wool and PVC is much better and close to the air conductivity, It allowed us to consider the wood scale extracted from palm wood trees, bio and renewable material as good heat insulator aiming in the future as a use for lightness applications, insulating or as a reinforcement in a given matrix. These potentialities still unknown are stengthened by the enormous quantity of such kind of wood gathered annually from palm trees and considered as wastes. © 2010 IOP Publishing Ltd.

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Tlijani, M., Ben Younes, R., Durastanti, J. F., & Boudenne, A. (2010). A simultaneous characterization and uncertainty analysis of thermal conductivity and diffusivity of bio-insulate material “palm date Wood” obtained from a periodic method. In IOP Conference Series: Materials Science and Engineering (Vol. 13). Institute of Physics Publishing. https://doi.org/10.1088/1757-899X/13/1/012015

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