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Marek Jakubowski

References Jakubowski M.: Influence of pitting corrosion on fatigue and corrosion fatigue of ship structures. Part I: Mechanism and modeling of pitting corrosion of ship structures. To be published in Polish Maritime Research Jakubowski M.: Influence of pitting corrosion on fatigue and corrosion fatigue of ship structures. Part II: Loading - pitting - cracking interaction. To be published in Polish Maritime Research Melchers R. E.: Pitting corrosion of mild steel in marine

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Eugeniusz Ranatowski

Modelling of Weld Phenomena 2. Book 594. Edited by H. Cerjak, H. Bhadeshia. The Istitute of Materials. London. 119-137, 1995. S. A. David, Babu S. S.: Microstructure modelling in weld metal. Mathematical Modelling of Weld Phenomena 3. Edited by H. Cerjak. Book 650. The Institute of Materials. London. 151-180, 1997. H. Bhadeshia: Models for the elementary mechanical properties of steel welds. Mathematical Modelling of Weld Phenomena 3. Edited by H. Cerjak. Book 650. The Institute of Materials. London. 229-282, 1997

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Mateusz Sondej, Chandana Ratnayake and Michał Wójcik

REFERENCES 1. Hotała E., Aniszczyk A.: Prototype silo structure with flaccid shell for biomass storage (in Polish). Materiały Budowlane 5 (2013) 52–54. 2. EN 1993-4-1, Eurocode 3. Design of Steel Structures. Part 4–1: Silos. Brussels: CEN, 2007. 3. Kuczyńska N., Wójcik M., Tejchman J. Effect of bulk solid on strength of cylindrical corrugated silos during filling. Journal of Constructional Steel Research 115 (2015) 1–17, DOI: 10.1016/j.jcsr.2015.08.002 4. Wójcik M., Tejchman J. Buckling analyses of metal cylindrical silos containing bulk

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Mariusz Deja, Michał Dobrzyński, Paweł Flaszyński, Jacek Haras and Dawid Zieliński

BIBLIOGRAPHY 1. Flaszynski P., Doerffer P., Piotrowicz M.: Effect of Jet Vortex Generators on Shock Wave Induced Separation on Gas Turbine Profile. Proceedings of the 13 th International Symposium on Experimental Computational Aerothermodynamics of Internal Flows, 7-11 May 2017, Okinawa, Japan. 2. Gebhard J.: Generative Fertigungsverfahren, Additive Manufacturing und 3D Drucken für Prototyping-Tooling-Produktion; Prototyping-Tooling-Produktion, Carl Hanser Verlag, München 2013. 3. Iftikhar A., Khan M., Alam K., Imran Jaffery S. H., Ali L., Ayaz

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Fali Huo, Deqing Yang and Yinzhi Zhao

References 1. Asundi A., Choi A. (1997) “Fiber metal laminates: an advanced material for future aircraft.” Journal of Materials processing technology. 63, 384-94. 2. Barsoum R. (2003). “The best of both worlds: hybrid ship hulls use composites and steel.” Amptiac Quart. 7(3), 55-61. 3. BendsOe M., Sigmund O. (2003). “Topology optimization: theory, methods, and applications.” Springer Verlag; 2nd; ISBN 3540429921. 4. BendsOe M. (1989). “Optimal shape design as a material distribution problem

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Caiyun Gu, Peng Zhao, Li Wang and Hongxia Guo

Using Biomedical Domain Dataset, Acta Electronica Malaysia, Vol. 1, No. 2, pp. 1-4, 2017. 12. N. S. Ismail, S. Kasim, Y. Y. Jusoh, R. Hassan, and A. Alyani, Medical Appointment Application, Acta Electronica Malaysia, Vol. 1, No. 2, pp. 5-9, 2017. 13. Z. He, X. Gu, X. Y. Sun, J. Liu, and B. S. Wang, An Efficient Pseudo-Potential Multiphase Lattice Boltzmann Simulation Model for Three-Dimensional Multiphase Flows, Acta Mechanica Malaysia, Vol. 2, No. 1, pp. 01-03, 2018. 14. X. Luo, Research on Anti-Overturning Perfomance

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Marian Cichy, Jacek Kropiwnicki and Zbigniew Kneba

wymienniki ciepła. Politechnika Gdańska, Gdańsk, 1988. 23. Shoureshi R., McLaughlin K. M.: Analytical and Experimental Investigation of Flow-Reversibile Heat Exchangers Using Temperature-Entropy Bond Graphs. Journal of Dynamic Systems, Measurement and Control, Vol. 106, June 1984. 24. Sproull R. L.: Modern Physics. John Willey& Sons, Inc., New York, Chapman & Hall, Limited London, 1958. 25. Surjya K. Pal, Derek A. Linkens: Temperature distribution in steel during hot rolling: pseudo-bond graph view. Simulation Modelling

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Paweł Dymarski

.: Strength formulas, diagrams, and tables [in Polish]. WNT, Warszawa 2013. 23. Dymarski P., Ciba E., Marcinkowski T. (2016). Effective method for determining environmental loads on supporting structures for offshore wind turbines. Polish Maritime Research 23(1(89)), 52-60. 24. Recommended Practice DNV-RP-C205 (2010). Environmental Conditions and Environmental Loads. Det Norske Veritas, October 2010 25. Sarpkaya T. (1986). In-line and transverse forces on smooth and rough cylinders in oscillatory flow at high

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Zygmunt Paszotta, Malgorzata Szumilo and Jakub Szulwic

.: Stability analyses of a cylindrical steel silo with corrugated sheets and columns. Steel and Composite Structures, 2016, Vol. 20, Iss. 1, pp. 147-166, DOI: 10.12989/scs.2016.20.1.147 29. Szeliski, R.: Computer Vision Algorithms and Applications. Springer-Verlag, London, UK , 2011. 30. Tejchman, J., Wojcik, M.: Modelling of shear localization during confined granular flow in silos within non-local hypoplasticity. Powder Technology, 2009,Vol. 192, iss. 3, pp.298-310, DOI: 10.1016/j.powtec.2009.01.021 31. Unger, J., Reich, M

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Hui-Min Hou, Guo-Hai Dong, Tiao-Jian Xu, Yun-Peng Zhao and Chun-Wei Bi

inserted springs. Applied Ocean Research 23, 277-284. 4. Cheng, M.Y., Cao, M.T., Tran, D.H, 2014. A hybrid fuzzy inference model based on RBFNN and artificial bee colony for predicting the uplift capacity of suction caissons. Automation in Construction 41, 60-69. 5. Choi, Y., Kim, B., Kwon, O., Youn, H., 2014. Horizontal pullout capacity of steel chain embedded in sand. Advances in Soil Dynamics and Foundation Engineering GSP, 240, 500-508. 6. Choo, Y.I., Casarella, M.J., 1971. Hydrodynamic resistance of towed cables