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Professor Roger Nokes

Contact

Department: Civil and Natural Resources Engineering

Email: roger.nokes@canterbury.ac.nz

Direct Dial: +64 3 3692046

Office: Civil & Natural Resources Engineering E442

Language: English

About
Research / Creative works
Networks

Fields of Research

  • Gravity currents
  • Tsunami generation
  • Jets and plumes
  • Mixing in stratified flows

Researcher Summary

Research interests include:
- Turbulent mixing in open channels
- Double-diffusive convection
- Mixing in stratified flows
- Internal gravity waves and intrusive flows
- Geophysical fluid dynamics
- Application of computer technology to experimental methods in fluid dynamics

Subject Area: Disciplines

  • Engineering and Technology: Fluids Engineering

Resources

  • Staff webpage

Prizes and Awards

  • Institution of Professional Engineers New Zealand ( 2011 - 2021)

Research/Scholarly/Creative Works

Journal Articles
  • Niroomandi A., Pampanin S., Dhakal RP., Ashtiani MS. and Nokes R. (2021) Experimental study on the effects of bi-directional loading pattern on rectangular reinforced concrete walls. Earthquake Engineering and Structural Dynamics http://dx.doi.org/10.1002/eqe.3433.
  • Köllner T., Meredith A., Nokes R. and Meiburg E. (2020) Gravity currents over fixed beds of monodisperse spheres. Journal of Fluid Mechanics 901 http://dx.doi.org/10.1017/jfm.2020.550.
  • Al-Behadili AJM., Sellier M., Hewett J., Nokes R. and Moyers-Gonzalez M. (2019) Identification of Ellis rheological law from free surface velocity. Journal of Non-Newtonian Fluid Mechanics 263: 15-23. http://dx.doi.org/10.1016/j.jnnfm.2018.10.010.
  • AL-Behadili AJM., Sellier M., Nokes R., Moyers-Gonzalez M. and Geoghegan PH. (2019) Rheometry based on free surface velocity. Inverse Problems in Science and Engineering 27(5): 689-709. http://dx.doi.org/10.1080/17415977.2018.1509965.
  • Ottenhaus L-M., Li M., Nokes R., Cammock P. and McInnes B. (2019) Use of particle tracking velocimetry in timber material and connection testing. European Journal of Wood and Wood Products 77(2): 195-209. http://dx.doi.org/10.1007/s00107-018-1376-y.
  • Cenedese C., Nokes R. and Hyatt J. (2018) Lock-exchange gravity currents over rough bottoms. Environmental Fluid Mechanics 18(1): 59-73. http://dx.doi.org/10.1007/s10652-016-9501-0.
  • Whittaker CN., Nokes RI., Lo HY., Liu PLF. and Davidson MJ. (2017) Physical and numerical modelling of tsunami generation by a moving obstacle at the bottom boundary. Environmental Fluid Mechanics 17(5): 929-958. http://dx.doi.org/10.1007/s10652-017-9526-z.
  • Zhou J., Cenedese C., Williams T., Ball M., Venayagamoorthy K. and Nokes RI. (2017) On the propagation of gravity currents over and through a submerged array of circular cylinders. Journal of Fluid Mechanics 831: 394-417. http://dx.doi.org/10.1017/jfm.2017.604.
  • Cenedese C., Nokes RI. and Hyatt J. (2016) Lock-exchange gravity currents over rough bottoms. Environmental Fluid Mechanics 18(1): 59-73. http://dx.doi.org/10.1007/s10652-016-9501-0.
  • Crowe AT., Davidson MJ. and Nokes RI. (2016) Modified reduced buoyancy flux model for desalination discharges. Desalination 378: 53-59. http://dx.doi.org/10.1016/j.desal.2015.08.010.
  • Crowe AT., Davidson MJ. and Nokes RI. (2016) Velocity measurements in inclined negatively buoyant jets. Environmental Fluid Mechanics 16(3): 503-520. http://dx.doi.org/10.1007/s10652-015-9435-y.
  • Qiao JD., Delavan SK., Nokes RI. and Plew DR. (2016) Flow structure and turbulence characteristics downstream of a spanwise suspended linear array. Environmental Fluid Mechanics 16(5): 1021-1041. http://dx.doi.org/10.1007/s10652-016-9465-0.
  • Whittaker C., Nokes R. and Davidson M. (2015) Tsunami forcing by a low Froude number landslide. Environmental Fluid Mechanics 15(6): 1215-1239. http://dx.doi.org/10.1007/s10652-015-9411-6.
  • Heays KG., Friedrich H., Melville BW. and Nokes RI. (2014) Quantifying the dynamic evolution of graded gravel beds using particle tracking velocimetry. Journal of Hydraulic Engineering 140(7) 4014027 http://dx.doi.org/10.1061/(ASCE)HY.1943-7900.0000850.
  • Campagnol J., Radice A., Nokes R., Bulankina V., Lescova A. and Ballio F. (2013) Lagrangian analysis of bed-load sediment motion: database contribution. Journal of Hydraulic Research 51(5): 589-596. http://dx.doi.org/10.1080/00221686.2013.812152.
  • Oliver C., Davidson M. and Nokes R. (2013) Behaviour of dense discharges beyond the return point. Journal of Hydraulic Engineering 139(12): 1304-1308. http://dx.doi.org/10.1061/(ASCE)HY.1943-7900.0000781.
  • Oliver CJ., Davidson MJ. and Nokes RI. (2013) Predicting the near-field mixing of desalination discharges in a stationary environment. Desalination 309: 148-155. http://dx.doi.org/10.1016/j.desal.2012.09.031.
  • Oliver CJ., Davidson MJ. and Nokes RI. (2013) Removing the boundary influence on negatively buoyant jets. Environmental Fluid Mechanics 13(6): 625-648. http://dx.doi.org/10.1007/s10652-013-9278-3.
  • Kashima A., Lee PJ. and Nokes R. (2012) Numerical errors in discharge measurements using the KDP method. Journal of Hydraulic Research 50(1): 98-104. http://dx.doi.org/10.1080/00221686.2011.638211.
  • Sue LP., Nokes RI. and Davidson MJ. (2011) Tsunami generation by submarine landslides: Comparison of physical and numerical models. Environmental Fluid Mechanics 11(2): 133-165. http://dx.doi.org/10.1007/s10652-010-9205-9.
  • Kikkert GA., Davidson MJ. and Nokes RI. (2010) Buoyant Jets with Three Dimensional Trajectories. Journal of Hydraulic Research 48(3): 292-301. http://dx.doi.org/10.1080/00221681003726270.
  • Taylor D., Delaux S., Stevens C., Nokes R. and Schiel D. (2010) Settlement rates of macroalgal algal propagules: cross-species comparisons in a turbulent environment. Limnology and Oceanography 55(1): 66-76.
  • Kikkert GA., Davidson MJ. and Nokes RI. (2009) A jet at an oblique angle to a cross-flow. Journal of Hydro-environment Research 3(2): 69-76. http://dx.doi.org/10.1016/j.jher.2009.07.004.
  • Plew DR., Enright MP., Nokes RI. and Dumas JK. (2009) Effect of mussel bio-pumping on the drag on and flow around a mussel crop rope. Aquacultural Engineering 40(2): 55-61. http://dx.doi.org/10.1016/j.aquaeng.2008.12.003.
  • Wait BR., Nokes R. and Webster-Brown JG. (2009) Freeze-thaw dynamics and the implications for stratification and brine chemistry in meltwater ponds on the McMurdo Ice Shelf, Antarctica. Antarctic Science 21: 243-254. http://dx.doi.org/10.1017/S0954102009001904.
  • Kikkert G., Davidson M. and Nokes R. (2008) Closure to "Inclined Negatively Buoyant Discharges" by Gustaaf Kikkert, Mark Davidson, and Roger Nokes. Journal of Hydraulic Engineering 134(12): 1784. http://dx.doi.org/10.1061/(ASCE)0733-9429(2008)134:12(1784).
  • Lim K., Ivey GN. and Nokes RI. (2008) The generation of internal waves by tidal flow over continental shelf/slope topography. Environmental Fluid Mechanics 8(5-6): 511-526. http://dx.doi.org/10.1007/s10652-008-9085-4.
  • Nokes RI., Davidson MJ., Stepien CA., Veale WB. and Oliver RL. (2008) The front condition for intrusive gravity currents. Journal of Hydraulic Research 46(6): 788-801. http://dx.doi.org/10.1080/00221686.2008.9521923.
  • Oliver CJ., Davidson MJ. and Nokes RI. (2008) k-ε Predictions of the initial mixing of desalination discharges. Environmental Fluid Mechanics 8(5-6): 617-625. http://dx.doi.org/10.1007/s10652-008-9108-1.
  • Scheepbouwer E., Davidson MJ. and Nokes RI. (2008) Tracer distributions of line advected thermals. Environmental Fluid Mechanics 8(5-6): 561-568. http://dx.doi.org/10.1007/s10652-008-9100-9.
  • Kikkert GA., Davidson MJ. and Nokes RI. (2007) Characterising strongly advected discharges in the initial dilution zone. Environmental Fluid Mechanics 7(1): 23-41. http://dx.doi.org/10.1007/s10652-006-9011-6.
  • Kikkert GA., Davidson MJ. and Nokes RI. (2007) Inclined Negatively Buoyant Discharges. Journal of Hydraulic Engineering 133(5): 545-554. http://dx.doi.org/10.1061/(ASCE)0733-9429(2007)133:5(545.
  • Kikkert GA., Davidson MJ. and Nokes RI. (2007) Inclined negatively buoyant discharges. Journal of Hydraulic Engineering 133(5): 545-554. http://dx.doi.org/10.1061/(ASCE)0733-9429(2007)133:5(545).
  • Maxworthy T. and Nokes RI. (2007) Experiments on gravity currents propagating down slopes. Part 1. The release of a fixed volume of heavy fluid from an enclosed lock into an open channel. Journal of Fluid Mechanics 584: 433-453. http://dx.doi.org/10.1017/S0022112007006702.
  • Nikora V., Nokes R., Veale W., Davidson M. and Jirka G. (2007) Large-scale turbulent structure of uniform shallow free-surface flows. Environmental Fluid Mechanics 7(2): 159-172. http://dx.doi.org/10.1007/s10652-007-9021-z.
  • Plew DR., Spigel RH., Stevens CL., Nokes RI. and Davidson MJ. (2006) Stratified flow interaction with a suspended canopy. Environmental Fluid Mechanics 6(6): 519-539. http://dx.doi.org/10.1007/s10652-006-9008-1.
  • Smith BW., Chase JG., Shaw GM. and Nokes RI. (2006) Simulating transient ventricular interaction using a minimal cardiovascular system model. Physiological Measurement 27(2): 165-179. http://dx.doi.org/10.1088/0967-3334/27/2/007.
  • Sue LP., Nokes RI. and Walters RA. (2006) Experimental modelling of tsunami generated by underwater landslides. Science of Tsunami Hazards 24(4): 267-287.
  • Chen BF. and Nokes RI. (2005) Time-independent finite difference analysis of fully non-linear and viscous fluid sloshing in a rectangular tank. Journal of Computational Physics 209(1): 47-81.
  • Huang JF., Davidson MJ. and Nokes RI. (2005) Two-dimensional and line jets in a weak cross-flow. Journal of Hydraulic Research (JHR) 43(4): 390-398.
  • Smith BW., Chase JG., Shaw GM. and Nokes RI. (2005) Experimentally verified minimal cardiovascular system model for rapid diagnostic assistance. Control Engineering Practice (CEP) 13(9): 1183-1193. http://dx.doi.org/10.1016/j.conengprac.2004.10.014.
  • Smith BW., Chase JG., Nokes R., Shaw GM. and Wake G. (2004) Minimal Haemodynamic System Model Including Ventricular Interaction and Valve Dynamics. Medical Engineering and Physics 26(2): 131-139.
  • Smith BW., Chase JG., Nokes RI., Shaw GM. and Wake G. (2004) Minimal haemodynamic system model including ventricular interaction and valve dynamics. MEDICAL ENGINEERING & PHYSICS 26(2): 131-139. http://dx.doi.org/10.1016/j.medenghy.2003.10.001.
  • Smith BW., Chase JG., Nokes RI., Shaw GM. and David T. (2003) Velocity profile method for time varying resistance in minimal cardiovascular system models. Physics in Medicine and Biology 48(20): 3375-3387.
  • Nokes R. (2002) Interface Proxy Classes in Object-Oriented User Interface Design: An Extension to the Model-View Architecture. New Zealand Journal of Applied Computing and Information Technology 6(1): 37-44.
  • Huang JF. and Davidson MJ. (2001) Two-dimensional jets in a weak cross-flow. .
  • Nokes RI. (1999) Issues in object construction and initialisation. New Zealand Journal of Applied Computing and Information Technology 3(1): 58-67.
  • Stamp AP., Hughes GO., Nokes RI. and Griffiths RW. (1998) The coupling of Waves and Convection. Journal of Fluid Mechanics 372: 231-271.
  • Nokes R. and Hughes G. (1994) Turbulent mixing in uniform channels of irregular cross-section. Journal of Hydraulic Research 32(1): 67-86.
  • Nokes RI. and Hughes GO. (1994) Turbulent mixing in uniform channels of irregular cross-section: Meélange turbulent dans des canaux uniformes avec un profil en travers de forme quelconque. Journal of Hydraulic Research 32(1): 67-86.
  • Ivey G. and Nokes R. (1989) Mixing due to the breaking of internal waves on sloping boundaries. Journal of Fluid Mechanics 204: 479-500.
  • Martin D. and Nokes R. (1989) A fluid-dynamical study of crystal settling in convecting magmas. Journal of Petrology 30(6): 1471-1500.
  • Martin D. and Nokes R. (1988) Crystal setting in a vigorously convecting magma chamber. Nature 332(April): 534-536.
  • Martin D. and Nokes R. (1988) Crystal settling in a vigorously converting magma chamber. Nature 332(6164): 534-536. http://dx.doi.org/10.1038/332534a0.
  • Nokes R. (1988) On the entrainment rate across a density interface. Journal of Fluid Mechanics 188: 185-204.
  • Nokes R. and Wood I. (1988) Vertical and lateral turbulent dispersion: some experimental results. Journal of Fluid Mechanics 187: 373-394.
  • Nokes R. and Wood I. (1987) Turbulent dispersion of a steady discharge of positively or negatively buoyant particles in two dimensions. Journal of Hydraulic Research 25(1): 103-122.
  • Nokes RI. (1987) Sediment transport, part II: Suspended load transport. Journal of Hydraulic Engineering 113(8): 1069-1072. http://dx.doi.org/10.1061/(ASCE)0733-9429(1987)113:8(1069).
  • NOKES RI. (1987) SEDIMENT TRANSPORT.2. SUSPENDED-LOAD TRANSPORT - DISCUSSION. JOURNAL OF HYDRAULIC ENGINEERING-ASCE 113(8): 1069-1072.
  • Nokes RI. and Wood IR. (1987) Lateral turbulent dispersion in open channel flow.. .
  • Nokes RI. (1985) Improved numerical model for sedimentation. Journal of Hydraulic Engineering 111(6): 1026-1027. http://dx.doi.org/10.1061/(ASCE)0733-9429(1985)111:6(1026).
  • NOKES RI. (1985) IMPROVED NUMERICAL-MODEL FOR SEDIMENTATION - DISCUSSION. JOURNAL OF HYDRAULIC ENGINEERING-ASCE 111(6): 1026-1027.
  • Nokes R., McNulty A. and Wood I. (1984) Turbulent dispersion from a steady two-dimensional horizontal source. Journal of Fluid Mechanics 149: 147-159.
Reports
  • Sue LP., Nokes RI. and Walters RA. (2006) Modelling of tsunami generated by underwater landslides.University of Canterbury. Commissioned by Earthquake Commission (EQC) Research Foundation.
Authored Books
  • Nokes R. (2018) Streams 3.00 - System Theory and Design. (Version 3.00 ed.). University of Canterbury. 169.
  • Nokes R. (2018) Streams 3.00 - User's Guide: Core Objects. (Version 3.00 ed.). University of Canterbury. 357.
  • Nokes R. (2018) Streams 3.00 - User's Guide: Field Objects. (Version 3.00 ed.). University of Canterbury. 250.
  • Nokes R. (2018) Streams 3.01 - System Theory and Design. (Version 3.01 ed.). University of Canterbury. 173.
  • Nokes R. (2018) Streams 3.01 - User's Guide: Core Objects. (Version 3.01 ed.). University of Canterbury. 421.
  • Nokes R. (2018) Streams 3.01 - User's Guide: Field Objects. (Version 3.01 ed.). University of Canterbury. 282.
  • Nokes RI. (2017) Streams 2.06: System Theory and Design. (2.06 ed.). University of Canterbury. 164.
  • Nokes RI. (2017) Streams 2.06: User's Guide: Core Objects. (2.06 ed.). University of Canterbury. 238.
  • Nokes RI. (2017) Streams 2.06: User's Guide: Field Objects. (2.06 ed.). University of Canterbury. 120.
  • Nokes RI. (2016) Streams Version 2.05: System Theory and Design. Christchurch: University of Canterbury. 156.
  • Nokes RI. (2016) Streams Version 2.05: User's Guide: Core Objects. Christchurch: University of Canterbury. 224.
  • Nokes RI. (2016) Streams Version 2.05: User's Guide: Field Objects. Christchurch: University of Canterbury. 108.
  • Nokes RI. (2014) Streams 2.02 System Theory and Design. Christchurch: University of Canterbury. 152pp.
  • Nokes RI. (2014) Streams 2.02 User's Guide: Field Objects. Christchurch: University of Canterbury. 106pp.
  • Nokes RI. (2014) Streams 2.02 User's Guide:Core Objects. Christchurch: University of Canterbury. 208pp.
  • Nokes RI. (2014) Streams 2.03 System Theory and Design. Christchurch: University of Canterbury. 154pp.
  • Nokes RI. (2014) Streams 2.03 User's Guide: Core Objects. Christchurch: University of Canterbury. 212pp.
  • Nokes RI. (2014) Streams 2.03 User's Guide: Field Objects. Christchurch: University of Canterbury. 108pp.
  • Nokes R. (2013) Streams 2.01 System Theory and Design. Christchurch: University of Canterbury. 152pp.
  • Nokes R. (2013) Streams 2.01 User's Guide: Core Objects. Christchurch: University of Canterbury. 208pp.
  • Nokes R. (2013) Streams 2.01 User's Guide: Field objects. Christchurch: University of Canterbury. 106pp.
  • Nokes RI. (2012) Streams 2.00 - System Theory and Design. Christchurch: University of Canterbury. 152pp.
  • Nokes RI. (2012) Streams 2.00 - User's Guide: Core Objects. Christchurch: University of Canterbury. 206pp.
  • Nokes RI. (2012) Streams 2.00 - User's Guide: Field Objects. Christchurch: University of Canterbury. 106pp.
  • Nokes RI. (2011) Streams 1.07 - System Theory and Design. Christchurch: University of Canterbury Press. 152pp.
  • Nokes RI. (2011) Streams 1.07 - User's Guide: Core Objects. Christchurch: University of Canterbury. 198pp.
  • Nokes RI. (2011) Streams 1.07 - User's Guide: Field Objects. Christchurch: University of Canterbury. 114pp.
  • Nokes RI. (2010) Streams 1.06 - System Theory and Design. Christchurch: University of Canterbury. 150.
  • Nokes RI. (2010) Streams 1.06 - User's Guide: Core Objects. Christchurch: University of Canterbury. 196.
  • Nokes RI. (2010) Streams 1.06 - User's Guide: Field Objects. Christchurch: University of Canterbury. 114.
  • Nokes R. (2009) Streams 1.00 - System Theory and Design. Christchurch: University of Canterbury. 147pp.
  • Nokes R. (2009) Streams 1.00 - User's Guide: Core Objects. Christchurch: University of Canterbury. 184pp.
  • Nokes R. (2009) Streams 1.00 - User's Guide: Field Objects. Christchurch: University of Canterbury. 114pp.
  • Nokes R. (2008) FluidStream 8.00 - System theory and design. Christchurch: University of Canterbury. 79.
  • Nokes R. (2008) FluidStream 8.00 - User's guide. Christchurch: University of Canterbury. 181.
  • Nokes R. (2008) ImageStream 7.00 - System theory and design. Christchurch: University of Canterbury. 49.
  • Nokes R. (2008) ImageStream 7.00 - User's guide. Christchurch: University of Canterbury. 151.
  • Nokes R. (2008) ParticleStream 3.00 - System theory and design. Christchurch: University of Canterbury. 51.
  • Nokes R. (2008) ParticleStream 3.00 - User's guide. Christchurch: University of Canterbury. 159.
  • Nokes R. (2006) FluidStream 6.03 - System Theory and Design. Christchurch: Department of Civil Engineering, University of Canterbury. 88pp.
  • Nokes R. (2006) FluidStream 6.03 - User’s Guide. Christchurch: Department of Civil Engineering, University of Canterbury. 175pp.
  • Nokes R. (2006) ImageStream 5.02 - System Theory and Design. Christchurch: Department of Civil Engineering, University of Canterbury. 88pp.
  • Nokes R. (2006) ImageStream 5.02 - User’s Guide. Christchurch: Department of Civil Engineering, University of Canterbury. 175pp.
  • Nokes R. (2005) FluidStream Version 6.01: System Theory and Design. Christchurch: Department of Civil Engineering, University of Canterbury. 68pp.
  • Nokes R. (2005) FluidStream Version 6.01: User's Guide. Christchurch: Department of Civil Engineering, University of Canterbury. 111pp.
  • Nokes R. (2005) ImageStream Version 5.01: System Theory and Design. Christchurch: Department of Civil Engineering, University of Canterbury. 44pp.
  • Nokes R. (2005) ImageStream Version 5.01: User's Guide. Christchurch: Department of Civil Engineering, University of Canterbury. 71pp.
  • Nokes RI. (2004) Streamline 5.0 - Operational Manual. Christchurch: Department of Civil Engineering, University of Canterbury.
  • Nokes RI. (2003) Streamline Version 4.0 Operational Manual. Christchurch: Department of Civil Engineering, University of Canterbury. 114.
  • Nokes RI. (2002) Streamline Version 2.003 - Operation Manual. Christchurch: University of Canterbury.
Conference Contributions - Published
  • Ottenhaus L-M., Li M. and Nokes R.. (2018) Application of Partical Tracking in Large Scale Timber Connection Testing. In Proceedings of the WCTE 2018 - World Conference on Timber Engineering.
  • Cenedese C., Nokes R. and Hyatt J.. (2016) Mixing in a density-driven current flowing over a rough bottom. In Proceedings of the 20th Australasian Fluid Mechanics Conference, AFMC 2016.
  • Cenedese C., Nokes R. and Hyatt J.. (2016) Mixing in a density-driven current flowing over a rough bottom. In Proceedings of the 20th Australasian Fluid Mechanics Conference, AFMC 2016.
  • Davidson MJ., Ramakanth A. and Nokes R.. (2016) Quantifying Boundary Impingement of Inclined Negatively Buoyant Jets. In.
  • Nokes R., Cenedese C., Ball M. and Williams T.. (2016) Gravity current propagation through fields of roughness elements. In Proceedings of the 20th Australasian Fluid Mechanics Conference, AFMC 2016.
  • Nokes R., Cenedese C., Ball M. and Williams T.. (2016) Gravity current propagation through fields of roughness elements. In Proceedings of the 20th Australasian Fluid Mechanics Conference, AFMC 2016.
  • Nokes RI., Cenedese C., Ball M. and Williams T.. (2016) Gravity current propagation through fields of roughness elements. In Proceedings.
  • Whittaker CN., Nokes RI. and Davidson MJ.. (2016) Spatial and temporal evolution of landslide-generated waves. In Proceedings of the 20th Australasian Fluid Mechanics Conference, AFMC 2016.
  • Whittaker CN., Nokes RI. and Davidson MJ.. (2016) Spatial and temporal evolution of landslide-generated waves. In Proceedings of the 20th Australasian Fluid Mechanics Conference, AFMC 2016.
  • Crowe AT., Davidson MJ. and Nokes RI.. (2012) Maximum height and return point velocities of desalination brine discharges. In.
  • Whittaker CN., Nokes RI. and Davidson MJ.. (2012) Experimental and numerical modelling of landslide-generated tsunamis. In.
  • Biggs C., Nokes R. and Vennell R.. (2010) The dynamics of a steady shallow turbulent jet. In.
  • Crowe A., Davidson MJ. and Nokes RI.. (2010) Inclined Negatively Buoyant Jets and Seabed Impingement. In.
  • Davidson MJ., Oliver CJ. and Nokes RI.. (2010) Dilution of Desalination Plumes. In.
  • Kashima A., Lee PJ. and Nokes R.. (2010) Accuracy of Instantaneous Flow Rate Estimation Using Pressure Measurements. In.
  • Khan S., Melville BW., Nokes R., Shamseldin AY. and Friedrich H.. (2010) Numerical investigation of the Reynolds number dependence of the flow within model ponds at different geometric scale ratios. In.
  • Nokes R., Sue L. and Davidson M.. (2010) Modelling Tsunami Generated by Submarine Landslides. In.
  • Nokes RI., McBryde JD., Davidson MJ. and Allis MJ.. (2010) Modelling the front condition of rigid boundary gravity currents. In Environmental Hydraulics: 183-188.
  • Plew D., Nokes R., Noering J. and Kenall-Grant M.. (2010) The structure of flows in suspended aquaculture canopies. In.
  • Radice A., Nokes R. and Ballio F.. (2010) Preliminary results from an application of PTV to bed-load grains. In Proceedings of River Flow 2010, Volume 2: 1681-1686.
  • Scheepbouwer E., Davidson MJ. and Nokes RI.. (2010) An Investigation into the Behaviour of a Jet at an Oblique Angle to a Across-flow. In.
  • Scheepbouwer E., Davidson MJ. and Nokes RI.. (2010) Transitional behaviour of buoyant jets moving along three-dimensional paths. In Environmental Hydraulics: 129-134.
  • Biggs C., Nokes R. and Vennell R.. (2009) Laboratory investigation of an ebb tidal jet. In.
  • Khan S., Melville BW., Shamseldin AY., Rajnish S. and Nokes R.. (2009) Effect of Vertical Locations of Inlet and Outlet on Hydraulics of Stormwater Retention Ponds using Numerical Modeling. In.
  • Oliver CJ., Davidson MJ. and Nokes RI.. (2007) CFD predictions for inclined hypersaline jets. In.
  • Scheepbouwer E., Davidson MJ. and Nokes RI.. (2007) Line advected thermals and puffs - revisited1. In.
  • Sue LP., Nokes RI. and Walters RA.. (2007) Modelling of Underwater Landslide Induced Tsunami. In Coasts & Ports 2007: 6pp.
  • Lim K., Ivey G. and Nokes R.. (2006) Internal Wave Generation Over the Continental Slope - A Laboratory Experiment. In Proceedings Sixth International Symposium on Stratified Flows: 527-532.
  • Maxworthy T. and Nokes RI.. (2006) Experiments on Gravity Currents Released From Short, Closed Locks Propagating Down Sloping Open Channels. In Proceedings Sixth International Symposium on Stratified Flows: 434-439.
  • Nokes RI., Davidson MJ. and Stepien CA.. (2006) A Front Condition for Intrusive Gravity Currents. In Proceedings Sixth International Symposium on Stratified Flows: 440-445.
Chapters
  • Fleming JG., Walters RA., Sue LP. and Nokes RI. (2005) Experimental Design for Solid Block and Granular Submarine Landslides: A Unified Approach. In Satake K (Ed.), Tsunamis: Case Studies and Recent Developments: 259-277. Amsterdam: Springer.
Conference Contributions - Published
  • Kikkert G., Davidson MJ. and Nokes RI.. (2004) Light attenuation data from weakly and strongly advected discharges. In Environmental Hydraulics: Proceedings of the 4th International Symposium on Environmental Hydraulics and the 14th Congress of Asia and Pacific Division, International Association of Hydraulic Engineering and Research Vol. 1: 337-342.
  • Plew DR., Nokes RI. and Davidson MJ.. (2004) Flow patterns in the wake of model mussel long-lines. In.
  • Ballard C., Nokes R. and Davidson M.. (2003) Dynamics of Free Surface Gravity Currents in Lock Exchange Flows. In Theme C 1: 373-380.
  • Smith BW., Chase JG., Shaw GM. and Nokes RI.. (2003) A Minimal Cardiovascular System Haemodynamic Model for Rapid Diagnostic Assistance. In Proceedings of the 5th IFAC Symposium on Modelling and Control in Biomedical Systems: 427-432.
Chapters
  • Hughes G. and Nokes R. (1995) Wave-convection coupling in multi-component convection: an experimental study. In Brandt A; Fernando H (Ed.), Double Diffusive Convection: 49-56. Washington: American Geophysical Union.
Conference Contributions - Published
  • Scott DM. and Nokes RI.. (1987) COMPUTER ASSISTED FLOW NET ANALYSIS.. In 1: 165-177.
Conference Contributions - Other
  • Cenedese C., Nokes RI. and Hyatt J. (2016) Dynamics of lock-release gravity currents over sparse and dense rough bottoms. San Diego, USA: VIIIth International Symposium on Stratified Flows, 29 Aug-1 Sep 2016.
  • Nokes RI., Cenedese C. and Hyatt J. (2016) Mixing in a density-driven current flowing over a rough bottom. Perth, Australia: 20th Australasian Fluid Mechanics Conference, 5-8 Dec 2016.
  • Nokes RI., Cenedese C., Ball M. and Williams T. (2016) The front condition got gravity currents propagating over rough boundaries. San Diego, USA: VIIIth International Symposium on Stratified Flows, 29 Aug-1 Sep 2016.
  • Whittaker C., Nokes RI. and Davidson M. (2016) Spatial and temporal evolution of landslide-generated waves. Perth, Australia: 20th Australasian Fluid Mechanics Conference, 5-8 Dec 2016.
  • Nokes RI. (2014) Environmental fluid dynamics 101 plus some cool stuff. Auckland, New Zealand: Fluids in New Zealand 2014 (FiNZ), 29-31 Jan 2014.
  • Dark AL., Bright JC. and Nokes RI. (2013) A single-domain approach for numerical modelling of groundwater - surface water interactions. Palmerston North, New Zealand: New Zealand Hydrological Society and Meteorological Society of New Zealand Joint Conference, 19-22 Nov 2013.
  • Dark AL., Bright JC. and Nokes RI. (2013) Numerical modelling of groundwater-surface water interactions using the double-averaged Navier-Stokes equations. Perth, Australia: International Association of Hydrogeologists 40th Annual Congress, 15-20 Sep 2013.
  • Qiao J., Delavan SK., Nokes R. and Plew D. (2013) Flow structure and turbulence characteristics around a spanwise suspended porous obstacle through laboratory experiments. Buffalo State College, Buffalo, New York: Association of American Geographers Middle States Division Conference,, 18-19 Oct 2013.
  • Delavan SK., Nokes R. and Plew D. (2012) Laboratory experiments on stratified flow through a suspended porous fence. San Diego, CA, USA: American Physical Society: Division of Fluid Dynamics, Annual Meeting, 18-20 Nov 2012.
  • Nokes R. (2009) Doing physical oceanography without an ocean. Wellington, New Zealand: 1st Physical Oceanography Workshop, 1-1 Mar 2009.
  • Nokes R., McBryde J., Davidson M. and Allis M. (2009) Why do slip and no-slip boundary gravity currents travel at different speeds? Santa Barbara, CA, USA: Modeling of turbidity currents and related gravity currents 2nd Workshop, 1-3 Jun 2009.
  • Chen BF., Wu CH. and Nokes RI. (2006) 3D fully non-linear sloshing fluid in tanks. Egmond aan Zee, The Netherlands: European Conference on Computational Fluid Dynamics (ECCOMAS CFD 2006), 5-8 Sep 2006.
  • Smith BW., Chase JG., Nokes RI., Coope ID. and Shaw GM. (2003) Optimisation based identification of cardiovascular system model parameters for patient specific diagnostic assistance. Sydney, Australia: World Congress on Medical Physics and Biomedical Engineering (WC2003), 24 Aug 2003.
  • Nokes R. and Hughes G. (1992) Mixing in compound channels. Hobart, Australia: 11th Australasian Fluid Mechanics Conference, 14 Dec 1992.
  • Nokes R. and Wood I. (1987) Lateral turbulent dispersion in open channel flow. Lausanne, Switzerland: 22nd IAHR Congress - Topics in Fluvial Hydraulics, 31 Aug 1987.
Theses / Dissertations
  • Kikkert GA. (2006) Buoyant jets with two and three-dimensional trajectories. Christchurch, New Zealand. University of Canterbury.
Software / Code
  • Nokes R. (Ed.) (2018) Streams 3.00. University of Canterbury.
  • Nokes R. (Ed.) (2018) Streams 3.01. University of Canterbury.
  • Nokes RI. (Ed.) (2017) Streams 2.06. University of Canterbury.
  • Nokes RI. (Ed.) (2016) Streams 2.05. .
  • Nokes RI. (Ed.) (2014) Streams 2.02. .
  • Nokes RI. (Ed.) (2014) Streams 2.03. .
  • Nokes R. (Ed.) (2013) Streams 2.01. .
  • Nokes RI. (Ed.) (2012) Streams 2.00. .
  • Nokes RI. (Ed.) (2011) Streams 1.07. .
  • Nokes RI. (Ed.) (2010) Streams 1.06. .
  • Nokes R. (Ed.) (2009) Streams 1.03. .
  • Nokes R. (Ed.) (2008) FluidStream 8.00. .
  • Nokes R. (Ed.) (2008) ImageStream 7.00. .
  • Nokes R. (Ed.) (2008) ParticleStream 3.00. .
  • Nokes R. (Ed.) (2006) FluidStream 6.03. .
  • Nokes R. (Ed.) (2006) ImageStream 5.02. .
  • Nokes R. (Ed.) (2005) FluidStream 6.01. .
  • Nokes R. (Ed.) (2005) ImageStream 5.01. .
  • Nokes RI. (Ed.) (2004) Streamline 5.0. .
  • Nokes RI. (Ed.) (2003) Imagestream Version 3.0. .
  • Nokes RI. (Ed.) (2003) Streamline Version 4.0. .
  • Nokes RI. (Ed.) (2002) Imagestream Version 1.003. .
  • Nokes RI. (Ed.) (2002) Streamline Version 2.003 - Particle Tracking Software for Experimental Fluid Dynamics. .

Review and Refereeing

Displaying all items.
  • Journal of Hydraulic Research ( 2000 - 2005)

Affiliations

  • International Association for Hydraulic Engineering Research (IAHR) (Professional Organisation): Member
  • Royal Society of New Zealand (RSNZ) (Professional Organisation): Member
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