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hydro PhD Projects, Programs & Scholarships

We have 11 hydro PhD Projects, Programs & Scholarships

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  Integrated Aero/Hydro/Structural Analysis and Multi-objective Optimisation of Floating Wind Turbines
  Dr A Maheri, Dr S Sriramula
Applications accepted all year round

Funding Type

PhD Type

Floating wind energy is potentially a highly scalable future energy source. Almost 80% of the Europe wind resources are in waters with +60 m depth, where floating offshore wind turbines are deemed to be the natural solutions.
  Data Analytics For Pore Water Pressure - New Tools For Sustainable Groundwater and Engineering Projects
  Prof W Timms
Applications accepted all year round

Funding Type

PhD Type

This new PhD scholarship will develop advanced pore pressure analysis for groundwater systems with engineering applications in civil construction, mining operations and water supply systems.
  Multiscale characterisation of the hydromechanical behaviour of hydrophobic sandy soils
  Dr C Beckett
Application Deadline: 31 December 2019

Funding Type

PhD Type

It is well understood that microscopic interactions between water menisci and soil particles govern the macroscopic mechanical behaviour of unsaturated soils.
  Benefits of cooperation in transboundary river basins
  Dr C Rouge
Application Deadline: 15 November 2019

Funding Type

PhD Type

This is an ideal project for a resourceful and driven individual. The successful candidate will develop and hone first-rate analytical, computational and communication skills that will enable them to choose their subsequent career path, whether in academia or industry.
  Numerical modelling of non-Newtonian rising bubbles
  Dr Z Xie, Prof T N Phillips, Dr S Pan
Application Deadline: 10 December 2019

Funding Type

PhD Type

The student will join in the Hydro-environmental Research Centre (HRC) at the Cardiff School of Engineering.
  Investigating fatigue damage mechanisms in welds and in additively manufactured parts by cross-referencing 3D defect distributions from CT scans, stress conditions and actual crack path
  Prof M Brochu, Prof R Tovo
Application Deadline: 25 October 2019

Funding Type

PhD Type

This project takes part partially in both Canada and Italy!. The project, "Investigating fatigue damage mechanisms in welds and in additively manufactured parts by cross-referencing 3D defect distributions from CT scans, stress conditions and actual crack path" is part of project FATCO 2019.
  Changes to prescribing – evaluation of likely impacts on the aquatic environment and AMR potential
  Dr K Helwig, Dr C Hunter, Dr J Spencer
Applications accepted all year round

Funding Type

PhD Type

SCEBE-19-019. After consumption, pharmaceutical residues are excreted by patients, not fully removed in wastewater treatment works, and thus enter the aquatic environment, where they pose a risk to aquatic organisms through chronic exposure.
  NERC GW4+ DTP PhD studentship: Linking large-scale oceanic and atmospheric forcings to local scale flooding via machine learning
  Dr T Kjeldsen
Application Deadline: 6 January 2020

Funding Type

PhD Type

This project is one of a number that are in competition for funding from the NERC Great Western Four+ Doctoral Training Partnership (GW4+ DTP).
  Mathematical and statistical analysis of time series data to quantify trends and events in ocean noise
  Dr M Nunes
Application Deadline: 31 October 2019

Funding Type

PhD Type

In collaboration with the National Physical Laboratory (NPL), the University of Bath is offering a PhD studentship in the field of mathematical and statistical analysis of time series data obtained from deep-ocean noise measurements.
  Experimental and numerical investigation of methods to dynamically influence the permeability of fractured rock in the near field environment using thermal stress and fluid pressure.
  Dr C McDermott, Dr A Fraser Harris
Application Deadline: 31 October 2019

Funding Type

PhD Type

This PhD will form part of a larger industry sponsored project developing smart pumping technology capable of delivering controlled location specific fluid pulses to rock.
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