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- W2056169549 abstract "a = function, m 2 n b = function, 2 2 p =d Bi = Biot number, h= k or hL=2k cp = specific heat, J=kg K d = laser beam diameter, mm erf x = error function g = function, K=ns _ g000 = energy generation rate per unit volume, W=m _ g t = temporally decaying portion of the laser source _ g x = distribution of the laser source in the x direction _ g y = spatially decaying portion of the laser source in the y direction H = ratio of convection heat transfer coefficient to thermal conductivity (h=k), m 1 h = convective heat transfer coefficient, W=m K i = imaginary unit Io = laser peak power density, W=m 2 k = thermal conductivity, W=m K L = thickness of the slab, m M = normalization integral for the x direction, m m = temperature change with time N = normalization integral for the y direction, m n = real part of the refractive index R = surface reflectivity T = temperature, K t = time, ns T1 = external environment temperature, K T = temperature, T T1 = Io 1 R = k T max = maximum temperature within the slab t0 = dummy time variable for integration, ns W = half width of the plate, m X = eigenfunction for the x direction x = x coordinate, m x = distance, x x0 = dummy spatial variable for integration, m Y = eigenfunction for the y direction, m y = y coordinate, m y = distance, y y0 = dummy spatial variable for integration, m yT max = value of y at maximum temperature = thermal diffusivity, k= cp, m =s = eigenvalue in the x direction, m 1 = eigenvalue in the y direction, m 1 = difference = laser pulse fall-time parameter, s 1 = laser pulse rise-time parameter, s 1 = imaginary part of the refractive index = wavelength, nm = absorption coefficient, m 1 = density, kg=m = time, t 2" @default.
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- W2056169549 date "2009-01-01" @default.
- W2056169549 modified "2023-09-25" @default.
- W2056169549 title "Heat Conduction in Two-Dimensional Slabs Subjected to Spatially Decaying Laser Pulses" @default.
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- W2056169549 doi "https://doi.org/10.2514/1.29986" @default.
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