The present paper emphasizes the potentialities of the industrial use of three-dimensional mathematical modelling of glass melting tanks for optimization of working conditions, design and control of industrial furnaces. A short review of related recent relevant works is presented and industrial needs and requirements in modelling are discussed. A modelling procedure to solve the heat and mass transfert in glass melting fumaces based on the integrated treatment of physical phenomena in combustion chamber and glass melting tank is presented. An application example is provided
The steady state and dynamic behaviour (heat transfer, temperatures, glass and gas flows) in glass f...
Various numerical simulations are currently available for the representation of flow and heat transf...
A mathematical model for the prediction of the performance of a glass furnace is described. It compr...
This study develops methodology capable of simulating numerically a glass melting furnace. To this e...
Float glass melting furnaces are characterized by their large sizes (60 m in length, 10 m in width, ...
This paper presents a three dimensional study of a gas-fired, regenerative, side-port glass melting ...
The results presented in this paper concern the analysis and the design of a controller for a purely...
A systematic analysis of the technological process of glass melting as an object of automatic contro...
The theme of the presented degree thesis is "The optimalisation of glass melting furnaces using...
Since the eighties of the 20th century supervisory control systems have been used in the glass indus...
Conventional industrial glass furnaces show broad glass melt residence time distributions in the mel...
The experimental and theoretical knowledge of the industrial glass melting process, acquired during ...
The paper starts with a short analysis of the performance of currently applied glass melting process...
A mathematical model of regenerative heat exchangers (regenerators) with stationary refractory packi...
A three-dimensional computer model has been developed that is suitable for predicting and analyzing ...
The steady state and dynamic behaviour (heat transfer, temperatures, glass and gas flows) in glass f...
Various numerical simulations are currently available for the representation of flow and heat transf...
A mathematical model for the prediction of the performance of a glass furnace is described. It compr...
This study develops methodology capable of simulating numerically a glass melting furnace. To this e...
Float glass melting furnaces are characterized by their large sizes (60 m in length, 10 m in width, ...
This paper presents a three dimensional study of a gas-fired, regenerative, side-port glass melting ...
The results presented in this paper concern the analysis and the design of a controller for a purely...
A systematic analysis of the technological process of glass melting as an object of automatic contro...
The theme of the presented degree thesis is "The optimalisation of glass melting furnaces using...
Since the eighties of the 20th century supervisory control systems have been used in the glass indus...
Conventional industrial glass furnaces show broad glass melt residence time distributions in the mel...
The experimental and theoretical knowledge of the industrial glass melting process, acquired during ...
The paper starts with a short analysis of the performance of currently applied glass melting process...
A mathematical model of regenerative heat exchangers (regenerators) with stationary refractory packi...
A three-dimensional computer model has been developed that is suitable for predicting and analyzing ...
The steady state and dynamic behaviour (heat transfer, temperatures, glass and gas flows) in glass f...
Various numerical simulations are currently available for the representation of flow and heat transf...
A mathematical model for the prediction of the performance of a glass furnace is described. It compr...