Validating a Closed Form Advection–Diffusion Solution by Experiments: Tritium Dispersion after Emission from the Brazilian Angra Dos Reis Nuclear Power Plant

Author:

Weymar G. J.,Buske D.,Vilhena M. T.,Bodmann B. E. J.

Publisher

Springer New York

Reference21 articles.

1. Biagio, R., Godoy, G., Nicoli, I., Nicolli, D., Thomas, P.: First atmospheric diffusion experiment campaign at the Angra site, KfK 3936, Karlsruhe, and CNEN 1201, Rio de Janeiro (1985)

2. Buske, D., Vilhena, M.T., Moreira, D.M., Tirabassi, T.: An analytical solution for the transient two-dimensional advection–diffusion equation with non-Fickian closure in Cartesian geometry by integral transform technique. In: Constanda, C., Perez, M.E. (eds.) Integral Methods in Science and Engineering. Computational Methods, pp. 33–40. Birkhäuser, Boston (2010)

3. Buske, D., Vilhena, M.T., Segatto, C.F., Quadros, R.S.: A general analytical solution of the advection–diffusion equation for Fickian closure. In: Constanda, C., Harris, P.J. (eds.) Integral Methods in Science and Engineering. Computational and Analytic Aspects, pp. 25–34. Birkhäuser, Boston (2011)

4. Buske, D., Vilhena, M.T., Bodmann, B., Tirabassi, T.: Analytical model for air pollution in the atmospheric boundary layer. In: Khare, M. (ed.) Air Pollution- Monitoring, Modelling and Heath, pp. 39–58. InTech (2012)

5. Costa, C.P., Vilhena, M.T., Moreira, D.M., Tirabassi, T.: Semi-analytical solution of the steady three-dimensional advection–diffusion equation in the planetary boundary layer. Atmos. Environ. 40, 5659–5669 (2006)

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