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Radiation Protection Dosimetry 56:151-155 (1994)
© 1994 Oxford University Press

Soil Gas and Radon Entry into a Simple Test Structure: Comparison of Experimental and Modelling Results

C.E. Andersen, J. Søgaard-Hansen and B. Majborn

A radon test structure has been established at a field site at Riso National Laboratory. Measurements have been made of soil gas entry rates, pressure couplings and radon depletion. The experimental results have been compared with results obtained from measured soil parameters and a two-dimensional steady-state numerical model of Darcy flow and combined diffusive and advective transport of radon. For most probe locations, the calculated values of the pressure couplings and the radon depletion agree well with the measured values, thus verifying important elements of the Darcy flow approximation, and the ability of the model to treat combined diffusive and advective transport of radon. However, the model gives an underestimation of the soil gas entry rate. Even if it is assumed that the soil has a permeability equal to the highest of the measured values, the model underestimates the soil gas entry rate by a factor of two.


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