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The FLICA4/CRONOS2 VVER-1000 model is based on the data available in the benchmark specifications.
The definition of the benchmark is presented briefly together with the benchmark specifications.
This chapter presents the benchmark specifications developed for XMark, a set of queries and lessons learned while executing the workload specification on a number of platforms.
The cross-section library, provided as part of the benchmark specifications, thus consists in a set of parameterized two group cross sections representing the different assemblies and the reflectors.
It is also shown that the modifications of the thermal conductivity and heat capacity of both uranium oxide and zirconium cladding, introduced into TRAC-PF1 according to the benchmark specifications in comparison with the initial TRAC correlations, do not change the steady state and transient results.
As a 3D core model is necessary for a best-estimate computation of all the scenarios of the V1000CT benchmark, all participants were asked to develop their own core coupled 3D thermal-hydraulics/neutron kinetics models using the data available in the benchmark specifications and a common cross-section library.
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In Appendix B: Table 20 we keep the benchmark specification and change dependent variables.
Yet, they remain qualitatively similar to those obtained with our benchmark specification (see Table 2).
Using the benchmark specification, we detail several potential dimensions of heterogeneity.
Our benchmark specification is a gravity model augmented with climate variables.
Equation (1) provides the basis for the benchmark specification of our empirical equations.
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