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Open Access research that uses mathematical models to solve ecological problems...

Solving a variety of ecological and biological problems is the focus of marine population modelling research conducted within the Department of Mathematics & Statistics. Here research deploys mathematical models to better understanding issues relating to fish stock management, ecosystem dynamics, ocean currents, and the effects of multispecies interactions within diverse marine ecosystems.

Research work in marine population modelling interfaces with a number of other key research specialisms, including mathematical biology, epidemiology and statistical informatics, where investigations are improving human understanding of the behaviour of infectious diseases, particularly in relation to animal infections; but also the modelling of complex biological processes such as antibiotic prodcution in actinobacteria.

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Number of items: 12.

Taylor, Ian and Robertson, Andrew Colin (2015) Numerical investigation of the coupled interaction between an unsteady aerodynamic flow field and a water film coating on a circular cylinder. Journal of Fluids and Structures, 54. pp. 312-331. ISSN 0889-9746

Taylor, Ian and Robertson, Andrew Colin (2011) Numerical simulation of the airflow–rivulet interaction associated with the rain-wind induced vibration phenomenon. Journal of Wind Engineering and Industrial Aerodynamics, 99 (9). pp. 931-944. ISSN 0167-6105

Taylor, Ian and Robertson, Andrew Colin (2010) Numerical simulation of rivulet dynamics associated with rain- wind-induced vibration. In: ASME Summer Meeting - 7th International Conference on Fluid-Structure Interactions, Flow-Sound Interactions and Flow-induced Vibration and NoisE, 2010-08-01 - 2010-08-05.

Taylor, I. J. and Robertson, A.C. and Wilson, S.K. and Duffy, B.R. and Sullivan, J.M. (2010) New developments in rain-wind-induced vibrations of cables. Proceedings of the ICE - Structures and Buildings, 163 (2). pp. 73-86. ISSN 0965-0911

Taylor, I.J. and Robertson, A.C. and Wilson, S. and Duffy, B.R. and Sullivan, J.M. (2010) New developments in rain–wind-induced vibrations of cables. Proceedings of the ICE - Structures and Buildings, 163 (2). pp. 73-86. ISSN 0965-0911

Robertson, A.C. and Taylor, I.J. and Wilson, S.K. and Duffy, B.R. and Sullivan, J.M. (2010) Numerical simulation of rivulet evolution on a horizontal cable subject to an external aerodynamic field. Journal of Fluids and Structures, 26 (1). pp. 50-73. ISSN 0889-9746

Robertson, A.C. and Taylor, I.J. (2008) Numerical simulation of rivulet evolution on a circular cylinder in an airflow. In: 8th UK Conference on Wind Engineering, 2008-07-14 - 2008-07-16.

Robertson, A.C. and Taylor, I.J. and Wilson, S.K. and Duffy, B.R. and Sullivan, J.M.; Zolotarev, I. and Horacek, J., eds. (2008) A model for the numerical simulation of rivulet evolution on a circular cylinder in an air flow. In: Flow-induced vibration. The Academy of Sciences of the Czech Republic, Prague, pp. 693-698. ISBN 9788087012123

Robertson, A.C. and Taylor, I.J. (2007) Investigating the addition and oscillation of artificial rivulets to stay cables using a discrete vortex method. In: 7th International Symposium on Cable Dynamics, 2007-12-10 - 2007-12-13. (Unpublished)

Robertson, A.C. and Taylor, I.J. (2007) Effect of rivulets on a circular cylinder using a 2D discrete vortex method. In: 12th International Conference on Wind Engineering, 2007-07-01 - 2007-07-06. (Unpublished)

Robertson, A.C. and Taylor, Ian; Taylor, Taylor, Ian J. and Vezza, Vessa, M., eds. (2006) Numerical analysis of forced oscillations of a circular cylinder using a discrete vortex method. In: Proceedings of the 7th UK Conference on Wind Engineering. University of Strathclyde, Glasgow, pp. 135-138. ISBN 9780955357107

Robertson, A.C. and Li, H. and Mackenzie, D. (2005) Plastic collapse of pipe bends under combined internal pressure and in-plane bending. International Journal of Pressure Vessels and Piping, 82 (5). pp. 407-416. ISSN 0308-0161

This list was generated on Sun Jul 5 09:27:41 2020 BST.