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‌HiPIMS Output‌‌‌

A High Performance Integrated Modelling Software framework for catchment systems engineering

Flood Memory Logo‌

F‌lood Memory: Multi-Event Modelling of Risk and Recovery

‌iturf logo‌

iTURF: I‌ntegrated Twitter Urban Real-time Flood Modelling Framework

‌‌SPH Modelling of Landslides‌

SPH Modelling of Fluid-like Landslides

‌Chaotic Mixing of Shallow Flows‌

Chaotic Mixing of Shallow Flows

 

 

‌Large woody debris on the river coquet‌‌‌

Discrete Element Modelling of Floating Debris

GPU Modelling of Tsunami‌‌

GPU Based Hydrodynamic Modelling of Tsunami

Multi-hazard risk to infrastructure‌

Quantifying Multi-hazard Risk to Infrastructure

  • HiPIMS
  • iTURF
  • Flood MEMORY
  • Discrete Element Modelling of Floating Debris
  • SPH Modelling of fluid-like Landslides
  • Chaotic Mixing of Shallow Flows
  • GPU Based Hydrodynamic Modelling of Tsunami
  • Quantifying Multi-Hazard Risk to Infrastructure

Some News about the project

 
 

Newcastle University    

For more information contact:
Canqi Liu (c.liu23@ncl.ac.uk)

Qian Li (q.li26@ncl.ac.uk)

 

School of Civil Engineering and Geosciences
Newcastle University, Newcastle upon Tyne
NE1 7RU, United Kingdom.

School of Civil Engineering and Geosciences