Presented is a stochastic-deterministic, response matrix method for transient analyses of nuclear systems. The method is based on the response matrix formalism, which describes a system by a set of response functions. We propose an approach in which these response functions are computed during a set of Monte Carlo criticality calculations and are later used to formulate a deterministic set of equations for solving a space-time dependent problem. Application of the response matrix formalism results in a set of loosely connected equations, which leads to a favourable linear scaling of the problem. The method offers a simplified approach compared to previously proposed response matrix methods by avoiding phase-space expansions in sets of basis...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Nuclear Science and Engineering...
The computational costs associated to the analysis of a stochastic response of a linear system can b...
The response of a stochastic system in a discrete coordinate set, as in the finite element approach,...
Presented is a stochastic-deterministic, response matrix method for transient analyses of nuclear sy...
Until recently, reactor transient problems were exclusively solved by approximate deterministic meth...
The Monte Carlo response matrix method is used to solve computationally-intensive problems (e.g., la...
This thesis investigates Monte Carlo methods applied to criticality and time-dependent problems in r...
A high-order, transient transport method based on the response matrix formalism is developed for app...
Advances in computational methods have given rise to the study and simulation of different aspects o...
In this thesis a new method for the analysis of power transients in a nuclear reactor is developed, ...
Stochastic Particle Response Calculator, SPaRC, is a new stochastic neutron transport code that has ...
A new technique is developed with an alternative formulation of the response matrix method implement...
International audienceReactor safety analysis requires complex coupled multiphysics calculations mod...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Nuclear Science and Engineering...
A new deterministic-Monte Carlo hybrid solution technique is derived for the time-dependent transpor...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Nuclear Science and Engineering...
The computational costs associated to the analysis of a stochastic response of a linear system can b...
The response of a stochastic system in a discrete coordinate set, as in the finite element approach,...
Presented is a stochastic-deterministic, response matrix method for transient analyses of nuclear sy...
Until recently, reactor transient problems were exclusively solved by approximate deterministic meth...
The Monte Carlo response matrix method is used to solve computationally-intensive problems (e.g., la...
This thesis investigates Monte Carlo methods applied to criticality and time-dependent problems in r...
A high-order, transient transport method based on the response matrix formalism is developed for app...
Advances in computational methods have given rise to the study and simulation of different aspects o...
In this thesis a new method for the analysis of power transients in a nuclear reactor is developed, ...
Stochastic Particle Response Calculator, SPaRC, is a new stochastic neutron transport code that has ...
A new technique is developed with an alternative formulation of the response matrix method implement...
International audienceReactor safety analysis requires complex coupled multiphysics calculations mod...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Nuclear Science and Engineering...
A new deterministic-Monte Carlo hybrid solution technique is derived for the time-dependent transpor...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Nuclear Science and Engineering...
The computational costs associated to the analysis of a stochastic response of a linear system can b...
The response of a stochastic system in a discrete coordinate set, as in the finite element approach,...