National Repository of Grey Literature 3 records found  Search took 0.01 seconds. 
The Effect of the Bypass Factor on Design and Geometry of the Evaporator for the Cooling Unit
Vytasil, Michal ; Rubinová, Olga (referee) ; Rubina, Aleš (advisor)
Diploma thesis focuses on effect of the bypass factor on design and geometry of the evaporator for the cooling unit of data centre. Effect of the bypass factor on individual design parameters is solved in detail. All dependendecies are captured by using graphs in which s placed a cement on that parameter. In part C, mathematical and physical solutions are demonstrated calculations and processes leading to the design of the exchanger. In the end, evaluation of the calculations is done and there is also showed possible improvements for the practise.
Optimalization of data center projects
Hruša, Petr ; Votruba, Zdeněk (advisor) ; Libich, Ladislav (referee)
The aim of this thesis is to standardize project design of data centers and to define the critical points in its implementation. The introduction describes the types of data centers . The next part describes the legislation and standards, which are needed to follow in the implementation of the data centers. It is also designed topology of the data center, which is divided into TIER I -IV in relation to the availability of services . The next section defines and describes the critical points in the implementation of data centers (energy center, cooling system, fire protection system etc.). On the basis of standards and critical points have been proposed general methodology for dealing with design data centers. The proposed methodology is demonstrated on already constructed and operated commercial data centers.
The Effect of the Bypass Factor on Design and Geometry of the Evaporator for the Cooling Unit
Vytasil, Michal ; Rubinová, Olga (referee) ; Rubina, Aleš (advisor)
Diploma thesis focuses on effect of the bypass factor on design and geometry of the evaporator for the cooling unit of data centre. Effect of the bypass factor on individual design parameters is solved in detail. All dependendecies are captured by using graphs in which s placed a cement on that parameter. In part C, mathematical and physical solutions are demonstrated calculations and processes leading to the design of the exchanger. In the end, evaluation of the calculations is done and there is also showed possible improvements for the practise.

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