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Performance characteristics of buildings in the assessment of revitalization needs

Treść / Zawartość
Identyfikatory
Warianty tytułu
PL
Właściwości użytkowe budynków w ocenie potrzeb rewitalizacji
Języki publikacji
EN
Abstrakty
EN
Performance characteristics are an indicator of both, the technical as well as aesthetic state of buildings. Aesthetic needs are in disagreement with the merciless aging process. The beauty of a city is formed not only by the original forms of new residential buildings, but also by existing tenement housing; thus preserving their aesthetics becomes a necessity. One of the most important problems connected with using any building, but especially a residential building, is ensuring an adequate technical condition. Process of revitalization of residential buildings is connected with familiarity with the technical problems of passing. However, the secret of lasting is found, above all, in the propagation of aesthetics. The diagnosis of the technical condition is an initial stage of renovating historical buildings. Conclusions drawn from the diagnosis are a basis for planning revitalization works.
PL
Właściwości użytkowe są wskaźnikiem zarówno stanu technicznego jak i estetycznego budynków. Potrzeby estetyki kłócą się jednak z bezlitosnym procesem starzenia. Piękno miasta tworzą nie tylko oryginalne formy nowych budynków mieszkalnych, ale i istniejące kamienice, dlatego też potrzeba utrzymania ich estetyk staje się wyższą koniecznością. Jednym z najważniejszych problemów podczas użytkowania każdego budynku, a przede wszystkim mieszkalnego, jest zapewnienie jego odpowiedniego stanu technicznego i estetycznego. Proces rewitalizacji łączy się ze znajomością technicznych potrzeb przemijania, ale tajemnica trwania odnajdywana jest przede wszystkim w estetyce. Diagnoza stanu technicznego jest wstępnym etapem renowacji obiektów zabytkowych. Wnioski wynikające z diagnozy stanowią podstawę programowania i planowania prac rewitalizacyjnych.
Rocznik
Strony
119--127
Opis fizyczny
Bibliogr. 26 poz., wykr.
Twórcy
  • University of Zielona Góra, Zielona Góra, Poland
Bibliografia
  • 1. Błaszczyński, T and Sokołowski, W., 2016. How to bring a building back from ruins. Civil and Environmental Engineering Reports 20, 017-026.
  • 2. Błaszczyński, TZ and Sielicki, P.W. 2019. The influence of design and contractor errors on the failure of a tenement building. Engineering Failure Analysis 97, 676-689.
  • 3. Błaszczyński, T, Wielentejczyk, P, Błaszczyński, M and Pijanowski, F., 2012. Renovation and modernisation of a postindustrial facility in Poznań. Civil and Environmental Engineering Reports 9, 5-17.
  • 4. Bucoń, R and Sobotka, A., 2015. Decision-making model for choosing residential building repair variants. Journal of Civil Engineering and Management 21, 893-901.
  • 5. Cibis, J and Nowogońska, B. 2017. Diagnosis of Transformation in Architecture and Construction of the Housing Stock in the Years 1848-2013 in Selected Cities of Upper Silesia. WMCAUS Prague, Czechy, 2017, IOP Publishing, IOP Conf. Series: Materials Science and Engineering 245, 052060.
  • 6. Ksit, B and Gaczek, M. 2018. Analytical meanders of selected systems for thermorenovation of historical buildings. E3S Web of Conferences 49, 00062.
  • 7. Knyziak, P., 2019. The impact of construction quality on the safety of prefabricated multi-family dwellings. Engineering Failure Analysis 100, 37-48.
  • 8. Knyziak, P, Krentowski, J and Bieranowski, P., 2017. Risks of the Durability of Large-Panel Buildings Elevations in Reference to the Conclusions from Technical Conditions. MATEC Web of Conferences 117, 1–8.
  • 9. Korentz, J and Nowogońska, B., 2018. Assessment of the life cycle of masonry walls in residential buildings. MATEC Web of Conferences 174, 01025.
  • 10. Laks, I, Walczak, Z, Szymczak-Graczyk, A, Ksit, B and Madrawski J., 2019. Hydraulic and Legal Conditions for Buildings in Floodplains-Case Study of Kalisz City (Poland). IOP Conference Series: Materials Science and Engineering 471, 102050.
  • 11. Łotysz, S., 2016. Reconstruction of war damaged buildings - a problem that still stands. The case of the national economy bank in Warsaw restored during the Second World War. Civil and Environmental Engineering Reports 23, 111-124.
  • 12. Masters, LW and Brandt, E., 1989. Systematic methodology for service life prediction of building materials and components. Materials and Structures 22.
  • 13. Misiągiewicz, M., 2011. Memory archive. Technical Transactions 14, 4-A/2011/1.
  • 14. Moan, T. 2011. Life-cycle assessment of marine civil engineering structures. Structure and Infrastructure Engineering: Maintenance, Management, Life-Cycle Design and Performance 7, 11-32.
  • 15. Monczynski, B, Ksit, B and Szymczak-Graczyk, A., 2019. Assessment of the Effectiveness of Secondary Horizontal Insulation Against Rising Damp Performed by Chemical Injection. IOP Conference Series: Materials Science and Engineering 471, 052063.
  • 16. Nowogońska, B., 2014. Model of the reliability prediction of masonry walls. Engineering Mechanics 2014 - 20th international conference. Svratka, Czechy: Brno University of Technology, 456-459.
  • 17. Nowogońska, B., 2019. Preventive services of residential buildings according to the pareto principle. IOP Conf. Series: Materials Science and Engineering 471, 112034.
  • 18. Nowogońska, B., 2016. Proposal for determining the scale of renovation needs of residential buildings. Civil and Environmental Engineering Reports 22, 137-144.
  • 19. Nowogońska, B and Cibis, J., 2017. Technical problems of residential construction. World Multidisciplinary Civil Engineering - Architecture - Urban Planning Symposium (WMCAUS’17). Prague, Czechy. IOP Publishing, 2017, IOP Conf. Series: Materials Science and Engineering 245, 1-6.
  • 20. Ostańska, A. 2015. Algorithm of revitalization programme design for housing estates. Civil and Environmental Engineering Reports 18, 107-114.
  • 21. Radziszewska-Zielina, E. 2011. Assessment methods of partnering relations of Polish, Slovak and Ukrainian construction enterprises with the use of fuzzy logic. Archives of Civil Engineering, 1(LVII), 87-118.
  • 22. Radziszewska-Zielina, E and Szewczyk, B. 2016. Supporting partnering relations management in construction projects' implementation using AHP and Fuzzy AHP. Procedia Engineering 161, 1096-1100.
  • 23. Radziszewska-Zielina, E and Śladowski, G., 2017. Supporting the Selection of a Variant of the Adaptation of a Historical Building with the Use of Fuzzy Modelling and Structural Analysis. Journal of Cultural Heritage 26, 53-63.
  • 24. Radziszewska-Zielina, E, Śladowski, G and Sibielak, M., 2017. Planning the reconstruction of a historic building by using a fuzzy stochastic network. Automation in Construction 84, 242-257.
  • 25. Runkiewicz, L., 2008. Principles of control and assessment of the quality of renovations and reinforcements of building structures. Scientific Notebook of the Wrocław University of Technology 71.
  • 26. Zielenbach, S. 2000. The Art of Revitalization: Improving Conditions in Distressed Inner-City.New York: Garland Publishing, Inc. A member of the Taylor and Francis Group.
Uwagi
PL
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0c040aec-7a2b-4e98-bc7d-54a7aeb99d13
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