National Repository of Grey Literature 18 records found  previous11 - 18  jump to record: Search took 0.00 seconds. 
Boarding House
Kryštofová, Iveta ; Vystrčil, Jan (referee) ; Košíčková, Ivana (advisor)
The aim of the diploma thesis is the processing of the design documentation for the construction of a boarding house with nearly zero energy consumption. The plot is located in the cadastre unit Znojmo-Louka, in a buildable area for recreation. The new building is detached, with partial basement, and has two floors. There is a preparation area in the one-storey section, including a dining area. Accommodation units can be found in a two-storey segment. And there is a technical background of the building in the basement. The vertical load-bearing system is made of ceramic blocks and concrete poured fittings used in the basement. The horizontal structures are formed cast-in-place reinforced slabs. The building is covered with a warm flat vegetation roof and a cold roof made of truss girders. The building is insulated with a contact thermal insulation system made of polystyrene. The building is based on deep piles and foundation reinforced concrete strips.
Low-energy building of kindergarten
Nečas, Lukáš ; Wierzbická, Helena (referee) ; Počinková, Marcela (advisor)
The aim of this project is to design a kindergarten with nearly zero energy consumption in Veřovice. The building is purposefully divided into three parts, where one part consists of locker rooms, an office, a food service and facilities for employees. The second part consists of 2 separate playrooms with a capacity for 40 children and the third part consists of the building services of the building. The project consists of three parts. The first part deals with the design of a building solution. It is a single-storey non-basement building, where the vertical load-bearing structures are made of Porotherm ceramic blocks and the horizontal load-bearing structures are designed from hollow prestressed Spiroll panels. The roof of the building is designed as a flat, warm, extensive green roof. The second part deals with the design of individual technical equipment. A ground / water heat pump is designed as a source of heat and cold. The building also uses mechanical ventilation, with heat recovery and the possibility of cooling selected rooms in the summer months. The third part consists of a detailed design of the heating system and contains a calculation of heat losses and a design of floor heating.
Apartment building Zahradní
Pečinka, David ; Žajdlík, Tomáš (referee) ; Rusinová, Marie (advisor)
The subject of the bachelor thesis is to design and develop design documentation for a new apartment building in Bystřice nad Pernštejnem with almost zero energy consumption in construction. The building is designed as a five-storey building with four above-ground and one underground floor. There are a total of 10 apartments on the above-ground. Elevator will be in the building. The vertical load-bearing structures are designed from geramic brick blocks with a contact thermal insulation system made of EPS polystyrene on above-ground and on underground floor are used the permanent form work with a contact thermal insulation system made of XPS polystyrene. The foundation structures are made of foundation strips made of plain concrete. The ceiling structures are made from reinforced concrete. The building is covered with a flat roof.
Apartment building
Jaroš, Radek ; Havířová, Zdeňka (referee) ; Lavický, Miloš (advisor)
The subject of this bachelor's thesis is the design of a new apartment building and the elaboration of project documentation for the construction. The apartment building is located on the southern outskirts of the city of Brno in the Brno - Jih district, in the part of the village Přízřenice on flat terrain. The building is designed as a free-standing building with four above-ground floors and one underground floor completely sunk below ground level. In the underground part of the apartment building there is a technical background of the building and individual cellar cubicles for the housing units. There are twelve residential units in the above-ground part of the building, three units on each floor. Housing units on the ground floor are complemented by terraces, housing units on other floors are complemented by balconies and loggias. A barrier-free entrance to the building is designed. An elevator is also designed in the building. The above-ground part of the apartment building is made of Porotherm ceramic blocks and insulated with a contact thermal insulation system. The external load-bearing walls in the basement are monolithic made of reinforced concrete. The horizontal load-bearing structures are made of monolithic reinforced concrete slabs. A single-skin flat roof is designed for the apartment building. The building is based on foundation strips. The building is designed parking with a sufficient number of parking spaces. The house is designed according to the requirements for buildings with almost zero energy consumption. Such a requirement has been achieved through heat recovery and building envelope parameters.
Kindergarten Krabík
Jakoš, Milan ; Kalánek, Jiří (referee) ; Ostrý, Milan (advisor)
The aim of this master´s thesis is the elaboration of project documentation for kindergarten with almost zero energy consumption. The project consists of three main parts. The first part is devoted to the civil engineering design of the building. The building is designed regarding to architectural expression, quality of made and type of use. The kindergarten is designed with capacity of 48 children split into two departments. The second part is devoted to the design of HVAC systems. The building uses mechanical ventilation with heat recovery, heating is provided by two gas boilers and the need of electricity is provided by a photovoltaic system. Captured rainwater is used effectively. The third part values the building regarding the method of multi–criteria analysis. For this evaluation uses national method SBToolCZ.
Apartment building
Herůdek, Pavel ; Nespěšný, Ondřej (referee) ; Pěnčík, Jan (advisor)
The subject of bachelor thesis, is a design of new apartment building in range of Construction Object – Apartment building and elaboration of the desing documentation for construction. The buildign is placed in eastern edge in Brno in the district Brno - Líšeň, on a sloping terrain. Apartment building is designed with four floors and underground floor with technical background. The apartment building contains eight apartments, on each floor two apartments. On the top floor are designed two apartments with terrace. There is established a wheelchair access to the building. In the building is desinged a elevator. Construciton of vertical supporting are made of ceramic block Porotherm. The vertical strucutres are made of reinforced concrete cast-in-place ceiling. Roofing is designed as double skin flat roof. The building is based on concrete foundation strips. Nearby the Apartment building is placed a carpark with sufficient parking places. The apartment building is designed as nearly zero-energy building. That has been achieved by heat recovery system on ventilation system and parameters of building envelope.
Energy Performance Certificate Buildings with Nearly Zero Energy Consumption
Odstrčilíková, Aneta ; Vyhlídalová, Karolína (referee) ; Horák, Petr (advisor)
The bachelor's thesis deals with the evaluation of the energy performance of the residential building in Brno. The theoretical part is about solar collectors and their distribution. In the computational part, it compares the non-renewable primary energy and the total supplied primary energy for the designed variants. It analyzes the energy needs and flows of the building. In part C there are two energy performance certificate of building – for the initial state and the designed state.
Energy Evaluation of Residential Buildings
Fojtů, Pavel ; Horák, Petr (referee) ; Vendlová, Lucie (advisor)
This master thesis offers two cost-saving measures to reduce the energy consumption of a residential building. These measure include insulation of the building envelope, domestic hot water by solar colectors and heat recovery.

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