The modeling of nuclear reactors involves the solution of a multi-physics problem with widely varying time and length scales. This translates mathematically to solving a system of coupled, non-linear, and stiff partial differential equations (PDEs). Multi-physics applications possess the added complexity that most of the solution fields participate in various physics components, potentially yielding spatial and/or temporal coupling errors. This dissertation deals with the verification aspects associated with such a multi-physics code, i.e., the substantiation that the mathematical description of the multi-physics equations are solved correctly (both in time and space). Conventional paradigms used in reactor analysis problems employed to cou...
Current practices in the nuclear industry to model the transient behaviour of nuclear reactors are b...
In this book, the Multi-Physics Modelling (MPM) approach is briefly presented, and is applied to stu...
Traditional nuclear reactor system analysis codes such as RELAP and TRAC employ an operator split me...
This report summarizes the work done in the summer of 08 by the Ph.D. student Vijay Mahadevan. The m...
Numerical simulation of nuclear reactors is a key technology in the quest for improvements in effici...
AbstractNumerical simulation of nuclear reactors is a key technology in the quest for improvements i...
The accurate modeling and simulation of nuclear reactor designs depends greatly on the ability to co...
Nowadays, the precise modeling of a nuclear reactor core is a challenge. This task involves several ...
Multidimensional, higher-order (2nd and higher) numerical methods have come to the forefront in rece...
This paper describes an efficient and nonlinearly consistent parallel so-lution methodology for solv...
High-fidelity modeling of nuclear reactors requires the solution of a nonlinear coupled multi-physic...
Transient reactor simulations are a chronically formidable challenge due to the computational rigor ...
A specificity of nuclear reactors is their multiphysics and multiscale character. The multiphysics n...
A new reactor core multi-physics system addresses the pellet-to-cladding heat transfer modeling to i...
The ability to accurately predict local pin powers in nuclear reactors is necessary to understand th...
Current practices in the nuclear industry to model the transient behaviour of nuclear reactors are b...
In this book, the Multi-Physics Modelling (MPM) approach is briefly presented, and is applied to stu...
Traditional nuclear reactor system analysis codes such as RELAP and TRAC employ an operator split me...
This report summarizes the work done in the summer of 08 by the Ph.D. student Vijay Mahadevan. The m...
Numerical simulation of nuclear reactors is a key technology in the quest for improvements in effici...
AbstractNumerical simulation of nuclear reactors is a key technology in the quest for improvements i...
The accurate modeling and simulation of nuclear reactor designs depends greatly on the ability to co...
Nowadays, the precise modeling of a nuclear reactor core is a challenge. This task involves several ...
Multidimensional, higher-order (2nd and higher) numerical methods have come to the forefront in rece...
This paper describes an efficient and nonlinearly consistent parallel so-lution methodology for solv...
High-fidelity modeling of nuclear reactors requires the solution of a nonlinear coupled multi-physic...
Transient reactor simulations are a chronically formidable challenge due to the computational rigor ...
A specificity of nuclear reactors is their multiphysics and multiscale character. The multiphysics n...
A new reactor core multi-physics system addresses the pellet-to-cladding heat transfer modeling to i...
The ability to accurately predict local pin powers in nuclear reactors is necessary to understand th...
Current practices in the nuclear industry to model the transient behaviour of nuclear reactors are b...
In this book, the Multi-Physics Modelling (MPM) approach is briefly presented, and is applied to stu...
Traditional nuclear reactor system analysis codes such as RELAP and TRAC employ an operator split me...