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In the second method the thermal neutron beam from a research reactor is incident on the scintillator.
Based on finite volume method, the thermal performance of three-dimensional heat pipe flat-plate solar collector is studied under steady-state.
According to this method the thermal energy for the synthesis of manganite crystallites is supplied by a fast exothermic combustion reaction.
To verify this method, the thermal diffusivities of alumina (Al2O3) and polystyrene foam were measured at 47.5 °C (320.5 K) and 25.3 °C (298.3 K), respectively, in atmospheric conditions.
In the method, the thermal characteristic parameters are automatically estimated as the outputs of the filtered state variables, whereas, in the usual thermal model correlation, they are manually identified by experienced engineers using trial-and-error approach.
In this paper, based on the law of non-Fourier heat conduction, using the wave function expansion method, the thermal wave scattering and temperature distributions of semi-infinite functionally graded materials containing a spherical inclusion were presented.
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Various growth techniques, such as the hydrothermal method [11], the thermal decomposition method [12], and the templating sol-gel method [13], have been developed to produce large-scale CuO nanowires.
Among these methods, the thermal evaporation technique is the most interesting technique because the advantages of this technique have high stability, high reproducibility, high deposition rate, large area deposition, and non-expansive.
This method uses the thermal huff and puff method in a five-spot well system.
In addition, the method provides the thermal relaxation times for argon.
The existing simplified method calculating the thermal storage coefficient is only applicable for materials with constant thermal properties.
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