Both a numerical and an analytical models were developed to simulate temperature profiles in continuous laminar pipe flow during microwave heating. Fully developed velocity and thermally developing conditions were assumed. The numerical solution was obtained by first solving Maxwell equations and then by coupling them with the energy balance for the flowing fluid. On the other hand, the same problem was solved analytically under the simplifying assumption foreseeing uniform heat generation inside the pipe. With the aim of reducing computational efforts, numerical and analytical results were compared in order to investigate conditions for which the two models allowed to recover the same temperature patterns. Thus, it has been shown that suit...
A continuous flow microwave heating system was set up by using one domestic microwave oven (1000W n...
Microwave technology is gaining popularity as a tool for chemical process intensification and an alt...
A novel heating efficiency analysis of the microwave heated stop-flow (i.e. stagnant liquid) and con...
Both a numerical and an analytical models were developed to simulate temperature profiles in continu...
Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction...
Use of microwave technology in several industrial heating processes is a relatively new approach. Co...
This paper introduces an improved hybrid (numerical-analytical) model for simulating microwave (MW) ...
The work here presented is concerned with the analysis of forced convection of Newtonian liquids flo...
This paper presents results of an analytical study of microwave heating of a fluid flowing through a...
The goal of this study was to numerically predict the temperature of a liquid product heated in a co...
Numerical models were developed to simulate temperature profiles in Newtonian fluids during ...
This article describes the results of a modeling study performed to understand the microwave heating...
Continuous microwave heating has the potential to revolutionize processing operations in which high ...
Questions of mathematical aspects of microwave technologies development for the oil extraction compl...
A continuous flow microwave heating system was set up by using one domestic microwave oven (1000W n...
Microwave technology is gaining popularity as a tool for chemical process intensification and an alt...
A novel heating efficiency analysis of the microwave heated stop-flow (i.e. stagnant liquid) and con...
Both a numerical and an analytical models were developed to simulate temperature profiles in continu...
Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction...
Use of microwave technology in several industrial heating processes is a relatively new approach. Co...
This paper introduces an improved hybrid (numerical-analytical) model for simulating microwave (MW) ...
The work here presented is concerned with the analysis of forced convection of Newtonian liquids flo...
This paper presents results of an analytical study of microwave heating of a fluid flowing through a...
The goal of this study was to numerically predict the temperature of a liquid product heated in a co...
Numerical models were developed to simulate temperature profiles in Newtonian fluids during ...
This article describes the results of a modeling study performed to understand the microwave heating...
Continuous microwave heating has the potential to revolutionize processing operations in which high ...
Questions of mathematical aspects of microwave technologies development for the oil extraction compl...
A continuous flow microwave heating system was set up by using one domestic microwave oven (1000W n...
Microwave technology is gaining popularity as a tool for chemical process intensification and an alt...
A novel heating efficiency analysis of the microwave heated stop-flow (i.e. stagnant liquid) and con...