Floris Goerlandt
Floris Goerlandt
Associate Professor, Dalhousie University, Department of Industrial Engineering
Verified email at
Cited by
Cited by
Traffic simulation based ship collision probability modeling
F Goerlandt, P Kujala
Reliability Engineering & System Safety 96 (1), 91-107, 2011
Maritime transportation risk analysis: Review and analysis in light of some foundational issues
F Goerlandt, J Montewka
Reliability Engineering & System Safety 138, 115-134, 2015
The scientific literature on Coronaviruses, COVID-19 and its associated safety-related research dimensions: A scientometric analysis and scoping review
M Haghani, MCJ Bliemer, F Goerlandt, J Li
Safety science 129, 104806, 2020
A method for detecting possible near miss ship collisions from AIS data
W Zhang, F Goerlandt, J Montewka, P Kujala
Ocean Engineering 107, 60-69, 2015
A framework for risk assessment for maritime transportation systems—A case study for open sea collisions involving RoPax vessels
J Montewka, S Ehlers, F Goerlandt, T Hinz, K Tabri, P Kujala
Reliability Engineering & System Safety 124, 142-157, 2014
A framework for risk analysis of maritime transportation systems: A case study for oil spill from tankers in a ship–ship collision
F Goerlandt, J Montewka
Safety Science 76, 42-66, 2015
Use of HFACS and fault tree model for collision risk factors analysis of icebreaker assistance in ice-covered waters
M Zhang, D Zhang, F Goerlandt, X Yan, P Kujala
Safety science 111, 128-143, 2019
An advanced method for detecting possible near miss ship collisions from AIS data
W Zhang, F Goerlandt, P Kujala, Y Wang
Ocean Engineering 124, 141-156, 2016
An overview of scientometric mapping for the safety science community: Methods, tools, and framework
J Li, F Goerlandt, G Reniers
Safety Science 134, 105093, 2021
A risk-informed ship collision alert system: Framework and application
F Goerlandt, J Montewka, V Kuzmin, P Kujala
Safety Science 77, 182-204, 2015
On the reliability and validity of ship–ship collision risk analysis in light of different perspectives on risk
F Goerlandt, P Kujala
Safety science 62, 348-365, 2014
Validity and validation of safety-related quantitative risk analysis: A review
F Goerlandt, N Khakzad, G Reniers
Safety science 99, 127-139, 2017
An analysis of ship escort and convoy operations in ice conditions
F Goerlandt, J Montewka, W Zhang, P Kujala
Safety science 95, 198-209, 2017
On the assessment of uncertainty in risk diagrams
F Goerlandt, G Reniers
Safety Science 84, 67-77, 2016
Determination of collision criteria and causation factors appropriate to a model for estimating the probability of maritime accidents
J Montewka, F Goerlandt, P Kujala
Ocean engineering 40, 50-61, 2012
A risk analysis of winter navigation in Finnish sea areas
OAV Banda, F Goerlandt, J Montewka, P Kujala
Accident Analysis & Prevention 79, 100-116, 2015
Towards probabilistic models for the prediction of a ship performance in dynamic ice
J Montewka, F Goerlandt, P Kujala, M Lensu
Cold Regions Science and Technology 112, 14-28, 2015
Risk management model of winter navigation operations
OAV Banda, F Goerlandt, V Kuzmin, P Kujala, J Montewka
Marine pollution bulletin 108 (1-2), 242-262, 2016
On a systematic perspective on risk for formal safety assessment (FSA)
J Montewka, F Goerlandt, P Kujala
Reliability Engineering & System Safety 127, 77-85, 2014
An analysis of wintertime navigational accidents in the Northern Baltic Sea
F Goerlandt, H Goite, OAV Banda, A Höglund, P Ahonen-Rainio, M Lensu
Safety science 92, 66-84, 2017
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