National Repository of Grey Literature 4 records found  Search took 0.00 seconds. 
Algorithm for automatic selection of suitable equipment type from heat exchanger database
Havlů, Michal ; Kohoutek, Josef (referee) ; Jegla, Zdeněk (advisor)
Thesis is devoted to development of an database algorithm for selection (or necking selection) of suitable type of heat exchanger for given industrial application. Database creates a part of multipurpose calculation system containing three individual modules: (i) module for selection (or necking selection) of type of heat exchanger for given application, (ii) module for thermal-hydraulic design or rating of heat exchanger, (iii) module for calculation of investments and operating cost. Thesis describes details of method for selection of suitable heat exchanger type for given application and presents and discuss individual criteria for selection process which influence values in tables of priorites for given equipment. These tables are unavoible part of selection algorithm. Details of software application of selection algorithm are also presented in the thesis. Description of behaviour of individual types of heat exchanger creates important part of thesis. Practical application of developed selection algorithm is demonstrated on several industrial examples.
Heating units for family houses - algorithm for selection
Reiter, Milan ; Vondál, Jiří (referee) ; Kermes, Vít (advisor)
This bachelor’s thesis deals with the ways of heating for family houses. In the first part of this thesis are described the heat sources. The heat sources are diveded by type of fuel. In the next part of this thesis is a decription of claims for installation the heating source, the use of various fuels and chimneys. In the next part are descibed claims of an operation the heating sources. The fourth part deals with the algorithm for selecting a source of heat. Here is a description of each step of algorithm, which we need for selection of suitable heat source. In the last part of my thesis is made a presentation of the algorithm performed on a model family home. There are selected six types of heating in the house. At the end is chosen one, most economical type.
Algorithm for automatic selection of suitable equipment type from heat exchanger database
Havlů, Michal ; Kohoutek, Josef (referee) ; Jegla, Zdeněk (advisor)
Thesis is devoted to development of an database algorithm for selection (or necking selection) of suitable type of heat exchanger for given industrial application. Database creates a part of multipurpose calculation system containing three individual modules: (i) module for selection (or necking selection) of type of heat exchanger for given application, (ii) module for thermal-hydraulic design or rating of heat exchanger, (iii) module for calculation of investments and operating cost. Thesis describes details of method for selection of suitable heat exchanger type for given application and presents and discuss individual criteria for selection process which influence values in tables of priorites for given equipment. These tables are unavoible part of selection algorithm. Details of software application of selection algorithm are also presented in the thesis. Description of behaviour of individual types of heat exchanger creates important part of thesis. Practical application of developed selection algorithm is demonstrated on several industrial examples.
Heating units for family houses - algorithm for selection
Reiter, Milan ; Vondál, Jiří (referee) ; Kermes, Vít (advisor)
This bachelor’s thesis deals with the ways of heating for family houses. In the first part of this thesis are described the heat sources. The heat sources are diveded by type of fuel. In the next part of this thesis is a decription of claims for installation the heating source, the use of various fuels and chimneys. In the next part are descibed claims of an operation the heating sources. The fourth part deals with the algorithm for selecting a source of heat. Here is a description of each step of algorithm, which we need for selection of suitable heat source. In the last part of my thesis is made a presentation of the algorithm performed on a model family home. There are selected six types of heating in the house. At the end is chosen one, most economical type.

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