Abstract

A = constant in Holder’s condition, Eq. (3e) C = heat capacity, kJ= kg C f x = initial condition, Eq. (1b) C k = thermal conductivity, W= m C q00 = dimensional heat flux, W=m s = dummy time variable, s T = temperature, C To = initial temperature, C T t = Fourier transform (either sine of cosine), C=m t = time, s to = dummy time variable, s u = dummy time variable, s x = spatial variable, m = thermal diffusivity [k= C ], m=s = constant in Holder’s condition, Eq. (3e) = fixed position, m = continuous spectral variable, 1=m = density, kg=m

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