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Airlie beach houses are quite common in the coastal areas of Australia. These houses, similar to other buildings, provide comfort for their residents. House comfort is not limited to temperature or sound pollution, vibration can be considered as another equally important factor. In this article, the vibration of an Airlie beach house was investigated. The base steel structure was modeled in SolidWorks and Space Gass for evaluating stress distribution and nodal displacement, respectively. To find the root cause of the distressing vibration of the house, which was felt with dwellings, the axial acceleration of the house’s structure was determined. Some feasible solutions such as adding a fiber-reinforced polymer joist hanger, inserting additional rubber padding to the joist hanger, and attaching additional bracing, were discussed and a cost analysis was considered for the solutions. Eventually, the nature of the best solution, which was adding rubber, was tested experimentally.
Rocznik
Tom
Strony
179--192
Opis fizyczny
Bibliogr. 26 poz.
Twórcy
autor
- Department of Science & Engineering, Faculty of Mechanical Engineering, James Cook University, Bebegu Yumba Campus, Townsville QLD 4811, Australia
autor
- Department of Engineering, Faculty of Mechanical Engineering, University of Kurdistan, Kurdistan, Iran
autor
- Department of Science & Engineering, Electronic Systems and IoT Engineering, James Cook University, Cairns QLD, Australia
Bibliografia
- 1. Abd Ghafar N.H., Shamsul Kamar I.Z., David Yeoh E.C., Koh H.B. 2020. ,,Walking Induced Floor Vibration on Glulam Timber Floor”. Lecture Notes in Civil Engineering: 1605-1611.
- 2. Amoroso Samuel D., Levitan Marc L. 2011. ,,Wind loads for high-solidity open-frame structures”. Wind and Structures 14(1): 1-14.
- 3. Australian / New Zealand Standard TM: Australian / New Zealand Standard TM Structural steel Part 1 : Hot-rolled bars and sections. 1996 (2010). P. 42.
- 4. Australian Standard: AS/NZS 1170.2: Standards Australia, 2011. ISBN: 978-7337 9805-4.
- 5. Australian Standard: Australian Standard AS 4055-2012, Wind loads for housing (2013), No May 2011. P. 9722.
- 6. Beards Chris. 1996. Structural vibration: analysis and damping.Elsevier. ISBN: 0080518052.
- 7. Bjorhovde Reidar. 2004. ,,Development and use of high performance steel”. Journal of Constructional Steel Research 60(3): 393-400.
- 8. Cao Yinping, Dou Yihua, Huang Yuxi, Cheng Jiarui. 2019. „Study on Vibration Characteristics of Fracturing Piping in Pump-Starting and Pump-Stopping Water Hammer”. Journal of Failure Analysis and Prevention 19(4): 1093-1104. Springer.
- 9. Chik T.N.T., P.C. Xian, N.A. Yusoff. 2020. „Vibration Criteria Analysis on Floor due to Human Walking” IOP Conference Series: Materials Science and Engineering 713: 12046. IOP Publishing.
- 10. Czech Piotr. 2011. „An intelligent approach to wear of piston-cylinder assembly diagnosis based on entropy of wavelet packet and probabilistic neural networks”. Communications in Computer and Information Science 239: 102-109. DOI: https://doi.org/10.1007/978-3-642-24660-9_12. Springer, Berlin, Heidelberg. ISBN: 978-3-642-24659-3. ISSN: 1865-0929. In: Mikulski Jerzy (eds), Modern transport telematics, 11th International Conference on Transport Systems Telematics, Katowice Ustron, Poland, October 19-22, 2011.
- 11. Czech Piotr. 2013. „Diagnose car engine exhaust system damage using bispectral analysis and radial basic function”. Advances in Intelligent Systems Research 30: 312-315. DOI: https://doi.org/10.2991/iccnce.2013.78. Atlantis Press. ISBN: 978-90-78677-67-3. ISSN: 1951-6851. In: Zheng D., Shi J., Zhang L. (eds), Proceedings of the International Conference on Computer, Networks and Communication Engineering (ICCNCE), Beijing, China, May 23-24, 2013.
- 12. Czech Piotr. 2013. „Diagnosing a car engine fuel injectors' damage”. Communications in Computer and Information Science 395: 243-250. DOI: https://doi.org/10.1007/978-3-642-41647-7_30. Springer, Berlin, Heidelberg. ISBN: 978-3-642-41646-0; 978-3-642-41647-7. ISSN: 1865-0929. In: Mikulski Jerzy (eds), Activities of transport telematics, 13th International Conference on Transport Systems Telematics, Katowice Ustron, Poland, October 23-26, 2013.
- 13. Graževičiūtė J., I. Skiedraitė, V. Jūrėnas, A. Bubulis, V. Ostaševičius. 2008. „Applications of high frequency vibrations for surface milling”. Mechanika 1: 46-49.
- 14. Lin Weiwei, Teruhiko Yoda. 2017. Bridge Engineering: Classifications, Design Loading, and Analysis Methods. Oxford: Butterworth-Heinemann. P. 245-271.
- 15. Loading S A A, Part Code. 1989. Australian Standard® SAA Loading Code Part 2: Wind loads. P. 1-99.
- 16. Morbia Hardik B., Sanghvi Capt. C.S., Bhavani Himesh K. 2011. „Effect of Road Traffic Vibration on Historic Structures”. Indian Journal of Applied Research 3(5): 318-320.
- 17. Muñoz Andre, Miguel Diaz, Roy Reyna. 2019. „Applicability study of a low cost seismic isolator prototype using recycled rubber”. IEEE Transactions on Evolutionary Computation 29(2).
- 18. Ostaševičius V., V. Jurėnas, M. Žukauskas. 2014. „Investigation of energy harvesting from high frequency cutting tool vibrations”. Mechanika 5: 500-505.
- 19. Shabana Ahmed A. 1991. Theory of Vibration. Springer.
- 20. Smith Andrew L., Stephen J. Hicks, Paul J. Devine. 2007. Design of floors for vibration: A new approach”. Steel Construction Institute Ascot, Berkshire, UK. ISBN: 1859421768.
- 21. Szolomicki Jerzy, Hanna Golasz-Szolomicka. 2019. „Technological Advances and Trends in Modern High-Rise Buildings”. Buildings 9(9). ISBN: 2075-5309.
- 22. Thomson William. 2018. Theory of vibration with applications. CrC Press. ISBN: 1351408496.
- 23. Ubartas M., V. Ostaševičius, S. Samper, V. Jūrėnas, R. Daukševičius. 2011. „Experimental investigation of vibrational drilling”. Mechanika 4: 368-373.
- 24. Vibration Guidelines used in Australia - Telemetrix. Available at: http://www.telemetrix.com.au/vibration-guidelines-used-in-australia/. - abgerufen am 2021-02-17.
- 25. Wang Shu, Mingzhu Wang, Guojun Zhang, Jiaqi Ge, Jiyang Huang, Qiming Zhang, Youheng Duan, Xuechun Liu. 2012. „Study on static and seismic performance of multi-floor steel cantilevered structure”. Journal of Building Structures 33(4): 77-89.
- 26. Zhang Zhiqiang, Ma Fei, Zhang Bill. 2018. „Vibration measurement of long-span floors in high-speed railway station”. Journal of Vibroengineering 20(7): 2705-2719. JVE International Ltd.
Uwagi
PL
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-94bfd50f-8dbf-44e3-86f6-616481c33ba0