Jul 23, 2019   1:54 p.m. Oľga
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Course syllabus 2_ASM6_AD - Alternative materials and technologies (FA - SS 2018/2019)


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University: Slovak University of Technology in Bratislava
Faculty: Faculty of Architecture
Course unit code: 2_ASM6_AD
Course unit title: Alternative materials and technologies
Mode of delivery, planned learning activities and teaching methods:
lecture1 hour weekly (on-site method)
seminar1 hour weekly (on-site method)

 
Credits allocated: 3
 
Recommended semester/trimester: Architecture - master (optional), 2. semester
Architecture (study in English) - master (optional), 2. semester
Urban Design - master (optional), 2. semester
Level of study: 2.
Prerequisites for registration: none
 
Assesment methods:
Participation in individual forms of teaching, submission of seminar essay of the required quality and passing a written examination.
 
Learning outcomes of the course unit:
Understanding of the environmental requirements of building materials and building technologies throughout their lifecycle, familiarization with the principles of sustainable architecture and use of the low tech and high tech approaches in it. Study on alternative approaches to energy and material flows in buildings including the use of renewable energy sources and their practical training.
 
Course contents:
Materials and technologies for environment-friendly building operation. Basic concepts, life-cycle assessment of buildings. Construction with natural materials (wood, clay, straw, stone), natural insulating materials, modern high tech alternatives, recycling. Vegetation roofs and walls, underground architecture. Impact of materials and technologies on indoor quality of buildings, environmental quality assessment. Technology for the operation of economical and environment-friendly buildings, basic concepts and basics, energy-efficient buildings, architecture design principles 2020. Use renewable energy related to architecture, energy and material flows. Assessment of energy efficiency, integrated design. Examples of application of alternative building materials and technologies. Seminar work: Exercise of necessary assessment methods and calculations, as well as applications of acquired knowledge (including knowledge of principles of design of energy efficient buildings) in the creation of an architectural concept.
 
Recommended or required reading:
Basic:
ŠPAČEK, R. -- PIFKO, H. Rukoväť udržateľnej architektúry. Bratislava: Slovenská komora architektov, 2013. ISBN 978-80-971205-1-1.
PIFKO, H. Alternatívne stavebné materiály a technológie. Životné prostredie, 38. p. 188--193. ISSN 0044-4863.
PIFKO, H. Stavebno-ekologická kvalita budov: učebná pomôcka KEEVT. Bratislava : STU v Bratislave FA, 2002.

Recommended:
KEPPL, J. Ekologicky viazaná tvorba: Kontexty architektúry a ekológie. Bratislava : STU v Bratislave, 2001. 184 p. ISBN 80-227-1532-8.
PIFKO, H. Alternatívne technológie v architektúre: Učebná pomôcka na FA STU. Bratislava : STU v Bratislave, 1999.
ŠUTOVSKÝ, R. Alternatívne materiály v architektúre XI. diel: učebná pomôcka pre ateliérovú tvorbu. Bratislava : STU v Bratislave FA, 2005. 279 p.
PIFKO, H. Alternatívne stavebné materiály. In Zdravé domy 2005 = Healthy Houses 2005 : sborník z mezinárodního vědeckého semináře konaného dne 23.listopadu 2005 v Brně = proceedings from the international scientific seminar held on 23 November 2005 in Brno. Brno: FA VUT v Brně, 2005, p. 79--86. ISBN 80-214-3040-0.
KRAJCSOVICS, L. Súčasné trendy riešenia nízkoenergetických budov. Architektúra a urbanizmus, 43. p. 99--115.
NAGY, E. Prírodné stavebné materiály v kontexte udržateľného stavebníctva.  [online]. 2006. URL: http://www.hlina.info/media/_publikace/disertacky-a-ost/d-003-nagy.pdf.
NAGY, E. Nízkoenergetický a energeticky pasívny dom. Bratislava : Jaga Group, 2009. 215 p. ISBN 978-80-8076-073-1.
KRAJCSOVICS, L. -- ŠÍP, L. Solárne mestá : Uplatnenie stratégie solárnych miest v podmienkach Slovenska. Bratislava: Fakulta architektúry STU, 2010. ISBN 978-80-227-3333-5.
TYWONIAK, J. Nízkoenergetické domy. Praha: Grada Publishing, 2005. 200 p. ISBN 80-247-1101-X.
HUDEC, M. Pasívní rodinný dům. Proč a jak stavět. Praha : Grada, 2008. 108 p. ISBN 978-80-247-2555-0.
GRUNNER, K. Možnosti opätovného použitia stavebných materiálov.  [online]. 2010. URL: http://www.udrzitelnavystavba.cz/WP3_papers/10_Grunner.pdf.
COPLÁK, J. -- PIFKO, H. -- GREGOROVÁ, J. -- RAKŠÁNYI, P. -- KOVÁČ, B. -- KOMRSKA, J. -- ŠABÍKOVÁ, J. -- VITKOVÁ, Ľ. -- IVANIČKA, K. Plánovanie ekologických sídlisk. Bratislava : Road, 2009. 132 p. ISBN 978-80-88999-37-9.
GRUNNER, R. Zelená architektúra.  [online]. 2014. URL: http://www.zelenarchitektura.sk/.
KRAJCSOVICS, L. iEPD - Inštitút pre en. pasívne domy.  [online]. 2014. URL: http://www.iepd.sk.
KIERULFOVÁ, Z. ArTUR - trvalo udržateľná architektúra.  [online]. 2014. URL: http://ozartur.sk/.

 
Language of instruction: slovak or english
 
Notes:
 
Courses evaluation:
Assessed students in total: 123

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50,4 %31,7 %15,4 %2,5 %0 %0 %
Name of lecturer(s): Ing. arch. Lorant Krajcsovics, PhD. (instructor, lecturer) - slovak, english
doc. Ing. arch. Henrich Pifko, CSc. (examiner, instructor, lecturer, person responsible for course) - slovak, english
Ing. arch. Tibor Varga, PhD. (instructor, lecturer) - slovak
 
Last modification: 15. 5. 2018
Supervisor: doc. Ing. arch. Henrich Pifko, CSc. and programme supervisor


Last modification made by Róbert Tichý on 05/15/2018.

Type of output: