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Modelling uncertainties in the diffusion-advection equation for radon transport in soil using interval arithmetic

Publication Type : Journal Article

Source :  Journal of environmental radioactivity 182 (2018): 165-171.

Url : https://www.sciencedirect.com/science/article/abs/pii/S0265931X16307548

Campus : Chennai

School : School of Engineering

Department : Mathematics

Verified : No

Year : 2018

Abstract : Modelling radon transport in the earth crust is a useful tool to investigate the changes in the geo-physical processes prior to earthquake event. Radon transport is modeled generally through the deterministic advection-diffusion equation. However, in order to determine the magnitudes of parameters governing these processes from experimental measurements, it is necessary to investigate the role of uncertainties in these parameters. Present paper investigates this aspect by combining the concept of interval uncertainties in transport parameters such as soil diffusivity, advection velocity etc, occurring in the radon transport equation as applied to soil matrix. The predictions made with interval arithmetic have been compared and discussed with the results of classical deterministic model. The practical applicability of the model is demonstrated through a case study involving radon flux measurements at the soil surface with an accumulator deployed in steady-state mode. It is possible to detect the presence of very low levels of advection processes by applying uncertainty bounds on the variations in the observed concentration data in the accumulator. The results are further discussed.

Cite this Research Publication : S. Chakraverty., B. K. Sahoo, T. D. Rao, P. Karunakar, and B. K. Sapra. "Modelling uncertainties in the diffusion-advection equation for radon transport in soil using interval arithmetic." Journal of environmental radioactivity 182 (2018): 165-171.

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