National Repository of Grey Literature 3 records found  Search took 0.00 seconds. 
Document Generation System for Energy Optimization
Hrabě, David ; Zaklová, Kristýna (referee) ; Hynek, Jiří (advisor)
The goal of the thesis was the design and implementation of software for the company Optimal-Energy.cz, a.s., which automatically proposes measures for optimizing the resource consumption of buildings, especially the installation of photovoltaic systems and heat pumps. Based on the calculations, it generates documents that inform the customer about the proposed optimizations and contain the necessary contracts for performing the installation. The approaches to document creation and the possibilities of its automation have been analyzed. The original energy optimization calculations have been simplified and unified to operate on a common model based on the performed analysis. The solution was then implemented in the .NET environment using the F# and C# programming languages.
Calculation of the energy of charged and neutral particles in a discharge and in the afterglow
Munzar, Marek ; Roučka, Štěpán (advisor) ; Dohnal, Petr (referee)
The aim of this work was to create a computer model that would simulate the process of the experiment performed on the apparatus SA CRDS. The program has two resuls. The first is determination of the concentrations of plasma's species in the active discharge. The second result is electron temperature in the afterglow. To create the model we needed to determine ongoing interactions and their rate constants. The method of chemical kinetics is important in this work. 1
Calculation of the energy of charged and neutral particles in a discharge and in the afterglow
Munzar, Marek ; Roučka, Štěpán (advisor) ; Dohnal, Petr (referee)
The aim of this work was to create a computer model that would simulate the process of the experiment performed on the apparatus SA CRDS. The program has two resuls. The first is determination of the concentrations of plasma's species in the active discharge. The second result is electron temperature in the afterglow. To create the model we needed to determine ongoing interactions and their rate constants. The method of chemical kinetics is important in this work. 1

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