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Civil & Structural Engineering (funding) PhD Projects, Programs & Scholarships

We have 136 Civil & Structural Engineering (funding) PhD Projects, Programs & Scholarships

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Showing 21 to 30 of 136
  Vibration Absorber Design using Experimental Testing within a Digital Twin
  Dr Z Jiang, Prof S Neild
Applications accepted all year round

Funding Type

PhD Type

Type of award. PhD Research Studentship. Department. Mechanical Engineering. Scholarship. £15,009 p.a. Duration. 3.5 years. Eligibility.
  Advanced composite structures and metamaterials design (in collaboration with a major aerospace industry)
  Dr D Chronopoulos
Applications accepted all year round

Funding Type

PhD Type

The University of Nottingham is a world leader in aerospace R&D. With a research income which exceeds £120M per Year, the Engineering Research Power of the University currently ranks 4th in the UK.
  Ultrasound health monitoring and damage identification in aerospace composites (in collaboration with a major aerospace industry)
  Dr D Chronopoulos
Applications accepted all year round

Funding Type

PhD Type

The University of Nottingham is a world leader in aerospace R&D. With a research income which exceeds £120M per Year, the Engineering Research Power of the University currently ranks 4th in the UK.
  EPSRC-SFI Centre for Doctoral Training in Advanced Metallic Systems – Call for Applications for 4-year Funded PhD and EngD Studentships

Funding Type

PhD Type

We are looking for one hundred STEM graduates excited to improve the world via impactful research in new and novel metallic materials for power generation, transport, sustainability and recyclables, in a rapidly evolving digital manufacturing era using advanced computing techniques.
  Advanced design of fibre reinforced composites - using multiscale reliability analysis and optimisation
  Dr P Dunning, Dr S Sriramula
Applications accepted all year round

Funding Type

PhD Type

This project aims to advance the design of components made from fibre reinforced composite materials, by combining techniques in multiscale analysis, structural reliability and design optimisation.
  Enhanced design and manufacture of cold-formed steel structures
  Dr A Bagheri Sabbagh, Dr P Dunning, Dr Amir Siddiq, Dr P C Davidson
Applications accepted all year round

Funding Type

PhD Type

Lightweight cold-formed steel (CFS) structures made of thin-walled sections are gaining popularity as a sustainable, affordable construction form for low- and medium-rise commercial and residential buildings.
  Enhanced structural design for floating offshore wind turbines
  Dr A Bagheri Sabbagh, Dr A Maheri
Applications accepted all year round

Funding Type

PhD Type

Wind turbines are one of the renewable sources of energy which is becoming a sustainable alternative way to produce energy, and which is growing fast all around the world.
  Enhancing the performance, condition, safety and reliability of offshore wind energy infrastructure systems using optimal design, inspections, structural health monitoring and structural control
  Dr P Omenzetter, Dr P Dunning, Dr S S Aphale
Applications accepted all year round

Funding Type

PhD Type

Wind turbines are exposed to frequent structural damage increasing the cost of wind energy generation. To drive these costs down, this project will develop new automated methods for detection of structural damage to wind turbines by examining vibration responses measured by sensors attached to the structure.
  Fluid flows above and within porous materials
  Prof D Pokrajac, Dr D Van der A
Applications accepted all year round

Funding Type

PhD Type

Fluid mechanics problems often involve fluid flows over porous materials. Examples of practical applications include flow through atmospheric and aquatic vegetation, coastal structures, and movement of biological fluids through various tissues.
  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.
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