Title of article :
Experimental and Monte Carlo simulation studies of open cylindrical radon monitoring device using CR-39 detector
Author/Authors :
Fazal-ur- Rehman، نويسنده , , K. Jamil، نويسنده , , M. Zakaullah، نويسنده , , F. Abu-Jarad، نويسنده , , S. A. Mujahid، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Pages :
12
From page :
243
To page :
254
Abstract :
There are several methods of measuring radon concentrations but nuclear track detector cylindrical dosimeters are widely employed. In this investigation, the consequence of effective volumes of the dosimeters on the registration of alpha tracks in a CR-39 detector was studied. In a series of experiments an optimum radius for a CR-39-based open cylindrical radon dosimeter was found to be about 3 cm. Monte Carlo simulation techniques have been employed to verify the experimental results. In this context, a computer code Monte Carlo simulation dosimetry (MOCSID) was developed. Monte Carlo simulation experiments gave the optimum radius of the dosimeters as 3.0 cm. The experimental results are in good agreement with those obtained by Monte Carlo design calculations. In addition to this, plate-out effects of radon progeny were also studied. It was observed that the contribution of radon progeny (218Po and 214Po) plated-out on the wall of the dosimeters increases with an increase of dosimeter radii and then decrease to 0 at a radius of about 3 cm if a point detector has been installed at the center of the dosimeter base. In the code MOCSID different types of random number generators were employed. The results of this research are very useful for designing an optimum size of radon dosimeters.
Keywords :
RADON , polonium , Etch-track dosimeters , Optimized dimensions
Journal title :
Journal of Environmental Radioactivity
Serial Year :
2003
Journal title :
Journal of Environmental Radioactivity
Record number :
706189
Link To Document :
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