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Building Information Modelling recognition in ship’s machinery designing and construction

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Building Information Modelling (BIM) technology is briefly reviewed in this paper in order to demonstrate the potential application of this methodology in the shipbuilding industry. A properly-created BIM model is a valuable tool for the designers and future users of a given investment. BIM models improve the design and execution process and serve as a tool to maintain and manage any asset. The purpose of this article is to propose to use BIM technology in other construction industries, including the shipbuilding industry. A properly-constructed BIM model of a ship can be used both by the shipyard, as well as by the ship owner or target users. The information contained in the BIM model of the ship can be used to optimize the execution phase in the shipyard, as well as provide valuable assistance to the user of the unit during its operation.
Rocznik
Strony
23--29
Opis fizyczny
Bibliogr. 22 poz., rys.
Twórcy
autor
  • Silesian University of Technology, Mechanical Engineering Faculty 18a Konarskiego St., 44-100 Gliwice, Poland
autor
  • Silesian University of Technology, Mechanical Engineering Faculty 18a Konarskiego St., 44-100 Gliwice, Poland
  • Silesian University of Technology, Mechanical Engineering Faculty 18a Konarskiego St., 44-100 Gliwice, Poland
Bibliografia
  • 1. AIA E202 (2008) Building Information Protocol Exhibit.
  • 2. Bejger, A., Chybowski, L. & Gawdzińska, K. (2018) Utilising elastic waves of acoustic emission to assess the condition of spray nozzles in a marine diesel engine. Journal of Marine Engineering & Technology 17, 3, pp. 153–159, doi: 10.1080/20464177.2018.1492361.
  • 3. Berczynski, S., Lachowicz, M. & Pajor, M. (2001) An improved method of approximating frequency characteristics in the problem of modal analysis and its applications. Computational Methods and Experimental Measurements X. Computational Engineering 3, pp. 575–584.
  • 4. Chybowski, L. & Gawdzińska, K. (2016a) On the Possibilities of Applying the AHP Method to a Multi-criteria Component Importance Analysis of Complex Technical Objects. Advances in Intelligent Systems and Computing 445, pp. 701–710, doi: 10.1007/978-3-319-31307-8_71.
  • 5. Chybowski, L. & Gawdzińska, K. (2016b) On the Present State-of-the-Art of a Component Importance Analysis for Complex Technical Systems. Advances in Intelligent Systems and Computing 445, pp. 691–700, doi: 10.1007/978- 3-319-31307-8_70.
  • 6. Chybowski, L., Grządziel, Z. & Gawdzińska, K. (2018) Simulation and Experimental Studies of a Multi-Tubular Floating Sea Wave Damper. Energies 11(4), pp. 1012:1–20, doi: 10.3390/en11041012.
  • 7. Chybowski, L. & Żółkiewski, S. (2015) Basic Reliability Structures of Complex Technical Systems. In: Rocha A., Correia A., Costanzo S., Reis L. (Eds) New Contributions in Information Systems and Technologies. Advances in Intelligent Systems and Computing 354. Springer, Cham.
  • 8. Derlukiewicz, D., Ptak, M., Wilhelm, J. & Jakubowski, K. (2017) The Numerical-Experimental Studies of Demolition Machine Operator Work. In: Rusiński E., Pietrusiak D. (Eds) Proceedings of the 13th International Scientific Conference. RESRB 2016. Lecture Notes in Mechanical Engineering, pp. 129–138, Springer, Cham.
  • 9. Fernandes, F.A.O., Alves de Sousa, R.J. & Ptak, M. (2018a) Application of Numerical Methods for Accident Reconstruction and Forensic Analysis. In: Head Injury Simulation in Road Traffic Accidents. Springer Briefs in Applied Sciences and Technology, pp. 59–98, Springer, Cham.
  • 10. Fernandes, F.A.O., Alves de Sousa, R.J. & Ptak, M. (2018b) Development of a New Finite Element Human Head Model. In: Head Injury Simulation in Road Traffic Accidents. Springer Briefs in Applied Sciences and Technology, pp. 25–39, Springer, Cham.
  • 11. Gawdzińska, K., Bryll, K., Chybowski, L. & Berczyński, S. (2018) The impact of reinforcement material on selected mechanical properties of reinforced polyester composites. Composites Theory and Practice 2, pp. 65–70.
  • 12. Gawdzińska, K., Chybowski, L. & Przetakiewicz, W. (2016) Proper Matrix-Reinforcement Bonding in Cast Metal Matrix Composites as a Factor of Their Good Quality. Archives of Civil and Mechanical Engineering 16(3), pp. 553–563, doi: 10.1016/j.acme.2015.11.004.
  • 13. Gawdzińska, K., Chybowski, L., Przetakiewicz, W. & Laskowski, R. (2017) Application of FMEA in the Quality Estimation of Metal Matrix Composite Castings Produced by Squeeze Infiltration. Archives of Metallurgy and Materials 62 (4), pp. 2171–2182, doi: 10.1515/amm-2017-0320.
  • 14. Gulillen, A.J. (2016) Building Information Modeling as Asset Management Tool. IFAC-Papers On Line 49, 28, pp. 191–196.
  • 15. Karliński, J., Ptak, M. & Dzialak, P. (2018) Improving occupant safety in heavy goods vehicles – universal energy absorbing system. 11th International Scientific and Technical Conference on Automotive Safety, Casta Papiernicka.
  • 16. Laskowski, R., Chybowski, L. & Gawdzińska, K. (2015) An engine room simulator as a tool for environmental education of marine engineers. New Contributions in Information Systems and Technologies. Advances in Intelligent Systems and Computing 354, pp. 311–322, doi: 10.1007/978-3-319- 16528-8_29.
  • 17. McArtur, J.J. (2015) A building information management (BIM) framework and supporting case study for existing building operations, maintenance and sustainability. Procedia Engineering 118, pp. 1104–1111.
  • 18. Pajor, M., Marchelek, K. & Powalka, B. (1999) Experimental verification of method of machine tool – cutting process system model reduction in face milling. Computational Methods and Experimental Measurements IX. International Series on Computational Engineering pp. 503–512.
  • 19. Pajor, M., Marchelek, K. & Powalka, B. (2002) Method of reducing the number of DOF in the machine tool-cutting process system from the point of view of vibrostability analysis. Journal of Vibration and Control 8, 4, pp. 481–492.
  • 20. Pulikowski, D., Lackner, F., Scheuerlein, C., Meinel, D., Savary, F., Tommasini, D. & Pajor, M. (2017) Testing Mechanical Behavior of Nb3Sn Rutherford Cable During Coil Winding. IEEE Transactions on Applied Superconductivity 27, 4, 4802105.
  • 21. Rokooei, S. (2015) Building Information Modelling in Project Management: Necessities, Challanges and Outcomes. Procedia – Social and Behavioral Sciences 210, pp. 87–95.
  • 22. Saków, M., Parus, A., Pajor, M. & Miądlicki, K. (2017) Nonlinear Inverse Modeling with Signal Prediction in Bilateral Teleoperation with Force-feedback. In: Proceeding of 22nd International Conference on Methods and Models in Automation and Robotics (MMAR), pp. 141–146.
Uwagi
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-78dd0e8e-658a-4ee6-a073-1da8e8e29123
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