Browsing by Author "Neilson, Richard"
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Item Bottom-up formulations for the multi-criteria decision analysis of oil and gas pipeline decommissioning in the North Sea : Brent field case study(2024-08-01) Jalili Dargalusani, Shahin; Leontidis, Georgios; Cauvin, Samuel; Gormley, Kate; Stone, Malcolm; Neilson, Richard; University of Aberdeen.Engineering; University of Aberdeen.Vice Principals; University of Aberdeen.Machine Learning; University of Aberdeen.Computing Science; University of Aberdeen.National Decommissioning Centre; University of Aberdeen.Biological Sciences; University of Aberdeen.Centre for Energy TransitionItem Deployment feasibility studies of variable buoyancy anchors for floating wind applications(Springer, 2022-10-07) Martinez, Rodrigo Andres; Arnau Almirall, Sergi; Scullion, Callum; Collins, Paddy; Neilson, Richard; Kapitaniak, Marcin; Dimitrovová, Z.; Biswas, P.; Gonçalves, R.; Silva, T.; University of Aberdeen.National Decommissioning Centre; University of Aberdeen.Engineering; University of Aberdeen.Centre for Applied Dynamics Research (CADR); University of Aberdeen.Centre for Energy TransitionItem Dynamic response of a shallow-draft floating wind turbine concept : Experiments and modelling(2024-05-01) Terrero Gonzalez, Alicia; Dai, Saishuai; Neilson, Richard; Papadopoulos, Jim; Kapitaniak, Marcin; University of Aberdeen.Engineering; University of Aberdeen.National Decommissioning Centre; University of Aberdeen.Centre for Applied Dynamics Research (CADR); University of Aberdeen.Centre for Energy TransitionItem Economic and environmental assessments to support the decision making process in the offshore wind farm decommissioning projects(2024-02) Jalili , Shahin; Maheri, Alireza; Ivanovic, Ana; Neilson, Richard; Bentin, Marcus; Kotzur, Stephan; May, Roger; Sünner, Isabel; University of Aberdeen.Engineering; University of Aberdeen.National Decommissioning Centre; University of Aberdeen.Centre for Energy TransitionItem Multi-Criteria Decision-Making for Offshore Wind Farm Decommissioning : Lessons from the Oil and Gas Sector(2025-12-01) Jalili, Shahin; Cauvin, Samuel; Kapitaniak, Marcin; Neilson, Richard; University of Aberdeen.Engineering; University of Aberdeen.National Decommissioning Centre; University of Aberdeen.Centre for Energy TransitionItem Nonlinear analysis of hydrodynamics of a shallow-draft floating wind turbine(2025-03) Terrero Gonzalez, Alicia; Dai, Saishuai; Papadopoulos, Jim; Neilson, Richard; Kapitaniak, Marcin; University of Aberdeen.Engineering; University of Aberdeen.National Decommissioning Centre; University of Aberdeen.Centre for Energy Transition; University of Aberdeen.Centre for Applied Dynamics Research (CADR)Item Novel piece-wise linear system for Floating Offshore Wind Turbines (FOWTs) wet-towing operations(2025-11) Terrero Gonzalez, Alicia; Dai, Saishuai; Neilson, Richard; Papadopoulos, Jim; Kapitaniak, Marcin; University of Aberdeen.Engineering; University of Aberdeen.National Decommissioning Centre; University of Aberdeen.Centre for Energy TransitionItem Performance-based design of stainless steel profiled barrier blast walls(2021) Hedayati, Mohammad H.; Sriramula, Srinivas; Neilson, Richard; University of Aberdeen.Engineering; University of Aberdeen.EnergyItem Towards a Digital Model of the UKCS using Smart City Concepts(2025-09) Cauvin, Samuel; Gormley, Kate; Stone, Malcolm; Neilson, Richard; Kapitaniak, Marcin; University of Aberdeen.Engineering; University of Aberdeen.National Decommissioning Centre; University of Aberdeen.Biological Sciences; University of Aberdeen.Centre for Energy TransitionItem Virtual Prototyping of a floating wind farm anchor during underwater towing operations(Springer, 2022-10-07) Martinez Mejia, Rodrigo Andres; Arnau Almirall, Sergi; Scullion, Callum; Collins, Paddy; Neilson, Richard; Kapitaniak, Marcin; Dimitrovová, Z.; Biswas, P.; Gonçalves, R.; Silva, T.; University of Aberdeen.Engineering; University of Aberdeen.National Decommissioning Centre; University of Aberdeen.Centre for Applied Dynamics Research (CADR); University of Aberdeen.Centre for Energy Transition
