Torch

Dr Robert Dorrell

University Research Fellow

Faculty and Department

  • Institutes
  • Energy and Environmental Institute

Journal Article

Inflation of ponded, particulate laden density currents

Dorrell, R. M., Patacci, M., & McCaffrey, W. D. (2018). Inflation of ponded, particulate laden density currents. Journal of Sedimentary Research, 88(11), 1276-1282. https://doi.org/10.2110/jsr.2018.65

The structure and entrainment characteristics of partially-confined gravity currents

Kelly, R. W., Dorrell, R. M., Burns, A. D., & McCaffrey, W. D. (2019). The structure and entrainment characteristics of partially-confined gravity currents. Journal of geophysical research. C, Oceans, 124(3), 2110-2125. https://doi.org/10.1029/2018JC014042

Self-sharpening induces jet-like structure in seafloor gravity currents

Dorrell, R. M., Peakall, J., Darby, S. E., Parsons, D. R., Johnson, J., Sumner, E. J., …Tezcan, D. (2019). Self-sharpening induces jet-like structure in seafloor gravity currents. Nature communications, 10(1), https://doi.org/10.1038/s41467-019-09254-2

Scaling analysis of multipulsed turbidity current evolution with application to turbidite interpretation

Ho, V. L., Dorrell, R. M., Keevil, G. M., Burns, A. D., & McCaffrey, W. D. (2018). Scaling analysis of multipulsed turbidity current evolution with application to turbidite interpretation. Journal of geophysical research. C, Oceans, 123(5), 3668-3684. https://doi.org/10.1029/2017jc013463

Optimisation of flow resistance and turbulent mixing over bed forms

Arfaie, A., Burns, A., Dorrell, R., Ingham, D., Eggenhuisen, J., & McCaffrey, W. (2018). Optimisation of flow resistance and turbulent mixing over bed forms. Environmental modelling & software : with environment data news, 107, 141-147. https://doi.org/10.1016/j.envsoft.2018.06.002