Course Unit Code | 222-0402/02 |
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Number of ECTS Credits Allocated | 2 ECTS credits |
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Type of Course Unit * | Choice-compulsory |
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Level of Course Unit * | First Cycle |
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Year of Study * | |
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Semester when the Course Unit is delivered | Summer Semester |
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Mode of Delivery | Face-to-face |
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Language of Instruction | English |
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Prerequisites and Co-Requisites | Course succeeds to compulsory courses of previous semester |
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Name of Lecturer(s) | Personal ID | Name |
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| KUD25 | doc. Ing. et Ing. František Kuda, CSc. |
| PRO177 | Ing. Zbyněk Proske, Ph.D. |
| TEI036 | Ing. Marek Teichmann, Ph.D. Paed.IGIP |
Summary |
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Students will acquire basic knowledge of technical infrastructure such as water supply, sewerage, electricity supply, gas, heat, joints. They will familiarize themselves with the basic ways of calculating water resource requirements, wastewater treatment and energy supply. He / she will acquire knowledge of situational solution properties and management calculations and technical infrastructure objects. They describe the continuity of the technical infrastructure constructions to the environment and to sustainable development. Version 222 0211/06 is dedicated to the field of preparation and realization of buildings, the 4th year of the bachelor's study in the summer semester, where the lecture lasts only 7 weeks and the version does not contain exercises. |
Learning Outcomes of the Course Unit |
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The aim of education is to provide awareness training for students in the technical infrastructure of buildings, learn about the basic principles of the concept, design, construction, operation, use, reliability and durability of these structures, the ability to learn technical discussions of the solved structures, be able to evaluate the technical infrastructure, contribute to the implementation of technical works infrastructure master basic numerical calculations to know the laws, regulations, Czech technical standard ČSN, other technical standards. |
Course Contents |
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Topics:
1. Introduction, technical infrastructure, technical equipment, relations in the environment, terminology
2. Water supply - concept, drinking water, utility, water sources, water accumulation, pumping stations, water distribution.
3. Water supply networks - design principles, materials, objects,
4. Sewerage - types of sewage, drainage and sewage treatment concepts, sewage.
5. Sewer networks - design principles, materials, objects,
6. Principles of dealing with precipitation water issues
7. Gas supply - concepts, types of heating gases and their sources, gas reservoirs, gas distribution to consumers.
8. Gas pipelines - Design principles, materials, objects, gas pipelines.
9. Heat supply - concepts, heat sources, types of heat media, heat distribution to consumers.
10. Heat conduits - material, objects, primary and secondary distribution and connection to objects.
12. Power supply - concepts, types of electrical systems, power distribution.
13. Communication lines, renewable energy sources, pipelines
14. Solutions to coordination of technical infrastructure
Topics Exercises:
1. Mutual relations of technical infrastructure, experience and questions about the operation of the technical infrastructure.
2. Basic calculations of requirements for water sources and their distribution networks, pressure conditions of water in the network.
3. Technical sketches of basic objects and water supply lines.
4. Basic calculations of waste water discharge requirements.
5. Technical sketches of basic objects and sewer materials
6. Basic calculations of the requirements for gas supply and their distribution networks. Pressure ratios of medium pressure and low pressure pipeline networks.
7. Technical sketches of the main gas pipeline objects and materials.
8. Basic calculations of heat supply requirements.
9. Technical drawings of main objects and materials of heat distribution.
10. Basic calculations of the requirements for electricity supply, distribution parameters.
11.Technical sketches of electrical wiring and objects according to their types.
12.Protective bands of technical equipment.
13. Processing of the semester work - TI objects in relation to the urbanized area + protection zones
14. Principles of spatial layout of lines and technical infrastructure objects. |
Recommended or Required Reading |
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Required Reading: |
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KNIHT, M., THOMSON, N.: Underground Infrastructure Research, A.A.Balkema Publishers, 2001
GRAHAM, S., MARVIN, S.: Splintering Urbanism: networked Infrastructures, technological mobilities and the urban condition, London: Routledge, 2001 |
HASÍK O.: Stavby vodovodů a kanalizací. VŠB-TU Ostrava, 2009.
ČERMÁKOVÁ M.: Inžinierske siete. STU v Bratislave. Bratislava 2003.
Stavební zákon č. 183/2006 Sb. a další předpisy.
KROČOVÁ, Š.: Strategie územního plánování v technické infrastruktuře, SPBI Spektrum, Ostrava 2013, ISBN: 978-80-7385-128-6
MEDEK, F.: Technická infrastruktura měst a sídel, ČVUT, Praha, 2002 |
Recommended Reading: |
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RECKNAGEL – SPRENGER: Taschenbuch der Heizungs u. Klimatechnik, Mnichov, 1995 |
MEDEK F.: Technická infrastruktura. ČVUT Praha 2002.
SYNÁČKOVÁ M., ŠRYTR P.: Inženýrské sítě. ČVUT Praha, 1999.
ŠRYTR P. a kol.: Městské inženýrství. Díl 1. 1998. Academia Praha
KNIHT, M., THOMSON, N.: Underground Infrastructure Research, A.A.Balkema Publishers, 2001
ŠRYTR P.: a kol. Městské inženýrství, 1. díl. Academia Praha, 1999. |
Planned learning activities and teaching methods |
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Lectures |
Assesment methods and criteria |
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Tasks are not Defined |