National Repository of Grey Literature 4 records found  Search took 0.00 seconds. 
Optimal design of solar air collector with latent heat thermal energy storage
Zálešák, Martin ; Mauder, Tomáš (referee) ; Klimeš, Lubomír (advisor)
The thesis deals with the creation for a numerical model of a solar collector with a phase change material as a heat storage medium. The model was implemented in Python. Using the created model, design optimization of several problems was carried out with the use of selected methods of heuristic optimization. The results of the behaviour of the created model and of design optimization were then analysed and evaluated.
Computer modeling of heat transfer problems with phase changes in MATLAB
Zálešák, Martin ; Mauder, Tomáš (referee) ; Klimeš, Lubomír (advisor)
The thesis deals with numerical modeling of heat transfer problems in materials undergoing phase changes. The effective heat capacity method was used for modeling of phase change. The method was implemented in a form of programs created in software MATLAB. Their functionality was verified by means of computer simulations applied to selected test problems. The simulated results were analysed and evaluated.
Optimal design of solar air collector with latent heat thermal energy storage
Zálešák, Martin ; Mauder, Tomáš (referee) ; Klimeš, Lubomír (advisor)
The thesis deals with the creation for a numerical model of a solar collector with a phase change material as a heat storage medium. The model was implemented in Python. Using the created model, design optimization of several problems was carried out with the use of selected methods of heuristic optimization. The results of the behaviour of the created model and of design optimization were then analysed and evaluated.
Computer modeling of heat transfer problems with phase changes in MATLAB
Zálešák, Martin ; Mauder, Tomáš (referee) ; Klimeš, Lubomír (advisor)
The thesis deals with numerical modeling of heat transfer problems in materials undergoing phase changes. The effective heat capacity method was used for modeling of phase change. The method was implemented in a form of programs created in software MATLAB. Their functionality was verified by means of computer simulations applied to selected test problems. The simulated results were analysed and evaluated.

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