Adjoint-based constant-mass partial derivatives
In transport theory, adjoint-based partial derivatives with respect to mass density are constant-volume derivatives. Likewise, adjoint-based partial derivatives with respect to surface locations (i.e., internal interface locations and the outer system boundary) are constant-density derivatives. This...
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Veröffentlicht in: | Annals of nuclear energy 2017-12, Vol.110, p.1052-1059 |
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Sprache: | eng |
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Zusammenfassung: | In transport theory, adjoint-based partial derivatives with respect to mass density are constant-volume derivatives. Likewise, adjoint-based partial derivatives with respect to surface locations (i.e., internal interface locations and the outer system boundary) are constant-density derivatives. This paper derives the constant-mass partial derivative of a response with respect to an internal interface location or the outer system boundary and the constant-mass partial derivative of a response with respect to the mass density of a region. Numerical results are given for a multiregion two-dimensional (r-z) cylinder for three very different responses: the uncollided gamma-ray flux at an external detector point, keff of the system, and the total neutron leakage. Results from the derived formulas compare extremely well with direct perturbation calculations. |
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ISSN: | 0306-4549 1873-2100 |
DOI: | 10.1016/j.anucene.2017.08.015 |