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Fluid Dynamics PhD Projects, Programs & Scholarships in New Zealand

We have 6 Fluid Dynamics PhD Projects, Programs & Scholarships in New Zealand

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Showing 1 to 6 of 6
  CFD of atmospheric re-entry
  Dr J Cater, Dr N Rattenbury
Applications accepted all year round

Funding Type

PhD Type

The Faculties of Science and Engineering are jointly developing a space systems programme at The University of Auckland. This cross-disciplinary effort has brought together engineers and scientists interested in growing New Zealand’s expertise in space mission design, satellite construction and space science.
  Small satellite micro-thrusters - developing the existing Pocket Rocket thruster to create a satellite-ready unit
  Dr J Cater, Dr N Rattenbury
Applications accepted all year round

Funding Type

PhD Type

The University of Auckland is developing micro-thruster systems for small and nano satellites. We are looking for a PhD candidate to work on creating new and developing existing thruster systems that are suitable for use within constrained satellite mass, volume and power budgets.
  Modelling ocean wave dissipation through pancake ice fields
  Dr F Montiel, Dr A Suanda
Applications accepted all year round

Funding Type

PhD Type

In a warming climate, ocean wave activity is projected to intensify in the polar regions. Sea ice forms as pancake ice at the ocean surface under intense wave conditions.
  Modelling wave-induced sea ice breakup on small and large scales
  Dr F Montiel
Applications accepted all year round

Funding Type

PhD Type

Sea ice is a key component of the climate system, which is experiencing significant changes as a consequence of global warming. The rapidly decreasing sea ice extent in the Arctic Ocean means solar radiations are increasingly being absorbed into the ocean, causing further melting and weakening of the sea ice cover.
  Numerical and analytical studies of early universe Einstein-Euler-scalar field models
  Dr F Beyer
Applications accepted all year round

Funding Type

PhD Type

The point of this project is to study the Einstein’ equation (as a model of gravity) coupled to the Euler equations (as a model of cosmological matter) and the scalar field equations (as a model of the “inflaton” driving “inflation”) in the cosmological setting close to a big bang singularity.
  Numerical modelling of sediment transportation and surface roughness on vegetated coastal dune systems
  Assoc Prof S Wakes
Applications accepted all year round

Funding Type

PhD Type

Coasts and coastal communities around the world are vulnerable to sea level increases and intensity of storm events. Vegetated sand dunes are relied upon for protection, buffering coastal communities from the sea.
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