Computational simulation of steam flow and heat transfer in power plant condensers on the basis of the threedimensional mathematical model for the flow through porous media is presented. In order to solve the mathematical model of steam flow and heat transfer in power plant condensers, the Streamline Upwind Petrov-Galerkin finite element method is applied. By comparison of the results of simulation with experimental results about an experimental condenser, it is confirmed that SUPG finite element method can be successfully applied for solving the three-dimensional mathematical model of steam flow and heat transfer in power plant condensers
The analysis of steam generators as an interface between primary and secondary circuits in light wat...
The present paper deals with the use of air cooled condensers in thermoelectric units, such as steam...
A porosity model for the simulation of two-phase flow on the secondary side of both horizontal and v...
Computational simulation of steam flow and heat transfer in power plant condensers on the basis of t...
Abstract—Computational simulation of steam flow and heat transfer in power plant condensers on the b...
A quasi-three dimensional computer algorithm is developed to simulate fluid flow and heat transfer i...
A quasi-three-dimensional algorithm is developed to simulate two-phase fluid flow and heat transfer ...
A finite element model is developed for the numerical simulation of the start-up of a deep-well wet ...
A finite element model is developed for the numerical simulation of the start-up of a deep-well wet ...
A computational procedure suitable for modeling both vertical and horizontal steam generators is pre...
The detailed flow field of water and steam mixture on the secondary side of horizontal and vertical ...
The subject of this diploma thesis is experimental and numerical assessment of the heat transfer coe...
International audienceThis paper is dedicated to the physical and numerical modelling of wet steam f...
This thesis is concerned on the simulation of wet steam flow using discontinuous Galerkin method. We...
This thesis is concerned on the simulation of wet steam flow using discontinuous Galerkin method. We...
The analysis of steam generators as an interface between primary and secondary circuits in light wat...
The present paper deals with the use of air cooled condensers in thermoelectric units, such as steam...
A porosity model for the simulation of two-phase flow on the secondary side of both horizontal and v...
Computational simulation of steam flow and heat transfer in power plant condensers on the basis of t...
Abstract—Computational simulation of steam flow and heat transfer in power plant condensers on the b...
A quasi-three dimensional computer algorithm is developed to simulate fluid flow and heat transfer i...
A quasi-three-dimensional algorithm is developed to simulate two-phase fluid flow and heat transfer ...
A finite element model is developed for the numerical simulation of the start-up of a deep-well wet ...
A finite element model is developed for the numerical simulation of the start-up of a deep-well wet ...
A computational procedure suitable for modeling both vertical and horizontal steam generators is pre...
The detailed flow field of water and steam mixture on the secondary side of horizontal and vertical ...
The subject of this diploma thesis is experimental and numerical assessment of the heat transfer coe...
International audienceThis paper is dedicated to the physical and numerical modelling of wet steam f...
This thesis is concerned on the simulation of wet steam flow using discontinuous Galerkin method. We...
This thesis is concerned on the simulation of wet steam flow using discontinuous Galerkin method. We...
The analysis of steam generators as an interface between primary and secondary circuits in light wat...
The present paper deals with the use of air cooled condensers in thermoelectric units, such as steam...
A porosity model for the simulation of two-phase flow on the secondary side of both horizontal and v...