These are the sources and citations used to research Paper for IEEE. This bibliography was generated on Cite This For Me on
In-text: (Awonorin, 1993)
Your Bibliography: Awonorin, S., 1993. Analysis of the heat transfer coefficient for liquid nitrogen droplets in cryogenic freezing of foods. International Journal of Refrigeration, 16(2), pp.143-151.
In-text: (Channagiri Anandatirthachar, Srinivas and Ramachandra, 2020)
Your Bibliography: Channagiri Anandatirthachar, N., Srinivas, S. and Ramachandra, M., 2020. Abrasive Water Jet Cutting: A Risk-Free Technology for Machining Mg-Based Materials. Magnesium - The Wonder Element for Engineering/Biomedical Applications,.
In-text: (Cicero et al., 2016)
Your Bibliography: Cicero, S., García, T., Álvarez, J., Bannister, A., Klimpel, A., Martín-Meizoso, A. and Aldazabal, J., 2016. Fatigue behaviour of structural steels with oxy-fuel, plasma and laser cut straight edges. Definition of Eurocode 3 FAT classes. Engineering Structures, 111, pp.152-161.
In-text: (Danzi and Marmo, 2019)
Your Bibliography: Danzi, E. and Marmo, L., 2019. Dust explosion risk in metal workings. Journal of Loss Prevention in the Process Industries, 61, pp.195-205.
In-text: (Garcia et al., 2015)
Your Bibliography: Garcia, T., Cicero, S., Ibáñez, F., Álvarez, J., Martín-Meizoso, A., Bannister, A., Klimpel, A. and Aldazabal, J., 2015. Fatigue Performance of Thermally Cut Bolt Holes in Structural Steel S460M. Procedia Engineering, 133, pp.590-602.
In-text: (Goud and Bharti, 2007)
Your Bibliography: Goud, M. and Bharti, P., 2007. Analysis of CNC Gas Cutting Machine Parameters. Conference: National Conference on Recent Developments in Manufacturing & Quality Management (RDMQM),.
In-text: (Guan et al., 2019)
Your Bibliography: Guan, J., Chen, X., Duan, J., Gu, K. and Shen, T., 2019. Study on the safety of sparks during rear-mixed abrasive water jet cutting process under the hazardous environment. Journal of Loss Prevention in the Process Industries, 62, p.103965.
In-text: (Guglielmi et al., 2021)
Your Bibliography: Guglielmi, G., Mitchell, B., Song, C., Kinsey, B. and Mo, W., 2021. Life Cycle Environmental and Economic Comparison of Water Droplet Machining and Traditional Abrasive Waterjet Cutting. Sustainability, 13(21), p.12275.
In-text: (Igwemezie, Mehmanparast and Kolios, 2018)
Your Bibliography: Igwemezie, V., Mehmanparast, A. and Kolios, A., 2018. Materials selection for XL wind turbine support structures: A corrosion-fatigue perspective. Marine Structures, 61, pp.381-397.
In-text: (Igwemezie, Mehmanparast and Kolios, 2019)
Your Bibliography: Igwemezie, V., Mehmanparast, A. and Kolios, A., 2019. Current trend in offshore wind energy sector and material requirements for fatigue resistance improvement in large wind turbine support structures – A review. Renewable and Sustainable Energy Reviews, 101, pp.181-196.
In-text: (Jalili, Maheri and Ivanovic, 2022)
Your Bibliography: Jalili, S., Maheri, A. and Ivanovic, A., 2022. Cost and Emission Analyses of Decommissioning of Offshore Wind Farms Using Reverse Installation Method: Cases of Lincs Limited, Gunfleet Sands, and Horns Rev I Wind Farms. DecomTool - Interreg North Sea Region,.
In-text: (Jalili, Maheri and Ivanovic, 2022)
Your Bibliography: Jalili, S., Maheri, A. and Ivanovic, A., 2022. Eco-Innovative concepts for the end of offshore wind energy farms lifecycle. [online] Aberdeen: DecomTools - Interreg North Sea Region, p.Cost and Emission Analyses of Decommissioning of Offshore Wind Farms Using Reverse Installation Method: Cases of Lincs Limited, Gunfleet Sands, and Horns Rev I Wind Farms. Available at: <https://northsearegion.eu/media/21105/cost-and-emission-analysis-of-decommissioning-og-offshore-wind-farms-using-reverse-installation-method.pdf> [Accessed 8 September 2022].
In-text: (Jankovic, Madic, Petkovic and Radovanovic, 2018)
Your Bibliography: Jankovic, P., Madic, M., Petkovic, D. and Radovanovic, M., 2018. Analysis and modeling of the effects of process parameters on specific cutting energy in abrasive water jet cutting. Thermal Science, 22(Suppl. 5), pp.1459-1470.
In-text: (Košťál, Moravčíková, Delgado Sobrino and Holubek, 2018)
Your Bibliography: Košťál, P., Moravčíková, J., Delgado Sobrino, D. and Holubek, R., 2018. On the Effect of the Cutting Speed of a Water Jet Abrasive Cutting Process on the Surface Morphology of the Low Carbon Steel S235. Materials Science Forum, 919, pp.92-100.
In-text: (Krajcarz, 2014)
Your Bibliography: Krajcarz, D., 2014. Comparison Metal Water Jet Cutting with Laser and Plasma Cutting. Procedia Engineering, 69, pp.838-843.
In-text: (Liu et al., 2018)
Your Bibliography: Liu, D., Li, H., Yan, Y., Guo, N., Song, X. and Feng, J., 2018. Effects of processing parameters on arc stability and cutting quality in underwater wet flux-cored arc cutting at shallow water. Journal of Manufacturing Processes, 33, pp.24-34.
In-text: (Maros, 2018)
Your Bibliography: Maros, Z., 2018. Machining of different materials with abrasive waterjet cutting. IOP Conference Series: Materials Science and Engineering, 448, p.012009.
In-text: (Ramakrishna, Raghuram and ben, 2018)
Your Bibliography: Ramakrishna, C., Raghuram, K. and ben, B., 2018. Process Modelling and Simulation Analysis of CNC Oxy-Fuel Cutting Process on SA516 Grade 70 Carbon Steel. Materials Today: Proceedings, 5(2), pp.7818-7827.
In-text: (Topham and McMillan, 2017)
Your Bibliography: Topham, E. and McMillan, D., 2017. Sustainable decommissioning of an offshore wind farm. Renewable Energy, 102, pp.470-480.
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