Title of article :
Benchmarking of the 3-D CAD-based Discrete Ordinates code “ATTILA” for dose rate calculations against experiments and Monte Carlo calculations
Author/Authors :
Youssef، نويسنده , , Mahmoud and Feder، نويسنده , , Russell and Batistoni، نويسنده , , Paola and Fischer، نويسنده , , Ulrich and Jakhar، نويسنده , , Shrichand and Konno، نويسنده , , Chikara and Loughlin، نويسنده , , Michael and Villari، نويسنده , , Rosaria and Wu، نويسنده , , Yican، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2013
Abstract :
Shutdown dose rate (SDDR) inside and around the diagnostics ports of ITER is performed at PPPL/UCLA using the 3-D, FEM, Discrete Ordinates code, ATTILA, along with its updated FORNAX transmutation/decay gamma library. Other ITER partners assess SDDR using codes based on the Monte Carlo (MC) approach (e.g. MCNP code) for transport calculation and the radioactivity inventory code FISPACT or other equivalent decay data libraries for dose rate assessment. To reveal the range of discrepancies in the results obtained by various analysts, an extensive experimental and calculation benchmarking effort has been undertaken to validate the capability of ATTILA for dose rate assessment. On the experimental validation front, the comparison was performed using the measured data from two SDDR experiments performed at the FNG facility, Italy. Comparison was made to the experimental data and to MC results obtained by other analysts. On the calculation validation front, the ATTILAʹs predictions were compared to other results at key locations inside a calculation benchmark whose configuration duplicates an upper diagnostics port plug (UPP) in ITER. Both serial and parallel version of ATTILA-7.1.0 are used in the PPPL/UCLA analysis performed with FENDL-2.1/FORNAX databases. In the FNG 1st experimental, it was shown that ATTILAʹs dose rates are largely over estimated (by ∼30–60%) with the ANSI/ANS-6.1.1 flux-to-dose factors whereas the ICRP-74 factors give better agreement (10–20%) with the experimental data and with the MC results at all cooling times. In the 2nd experiment, there is an under estimation in SDDR calculated by both MCNP and ATTILA based on ANSI/ANS-6.1.1 for cooling times up to ∼4 days after irradiation. Thereafter, an over estimation is observed (∼5–10% with MCNP and ∼10–15% with ATTILA). As for the calculation benchmark, the agreement is much better based on ICRP-74 1996 data. The divergence among all dose rate results at ∼11 days cooling time is no more than 15% among all participants.
Keywords :
ATTILA 3-D Discrete Ordinates , ITER diagnostics ports , 14-MeV integral experiments , Shutdown dose rates , Calculation benchmarking , FNG facility
Journal title :
Fusion Engineering and Design
Journal title :
Fusion Engineering and Design