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Applied Mathematics (power) PhD Projects, Programs & Scholarships

We have 42 Applied Mathematics (power) PhD Projects, Programs & Scholarships

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  Virtual reality energy system simulation for future zero mission power generation
  Prof M Pourkashanian
Application Deadline: 30 September 2019

Funding Type

PhD Type

With the steady increase in the penetrations of wind and other renewable energy to the power generation mix, conventional power generations are required to operate with more flexibility, wider fuel date and substantially lower emission.
  Zero emissions power plants through combustion optimisation
  Prof M Pourkashanian
Application Deadline: 30 September 2019

Funding Type

PhD Type

The combustion of fossil fuels for power generation will remain to play a significant role to meet the increasing energy demand in the foreseeable future.
  Deposition prevention for future power stations – an international collaboration with USA
  Prof M Pourkashanian
Application Deadline: 30 September 2019

Funding Type

PhD Type

The concern over the environment impact of burning fossil fuels for power generation and fluctuations in the fuel price have led to the power plants increasingly using variable fuels and biomass.
  EPSRC Centre for Doctoral Training in Future Propulsion and Power (MRes & PhD)

Funding Type

PhD Type

Location. MRes year 1, University of Cambridge-Department of Engineering; PhD years 2-4, Universities of Cambridge, Oxford or Loughborough.
  EPSRC Centre for Doctoral Training in Future Propulsion and Power (MRes & PhD)

Funding Type

PhD Type

Location. MRes year 1, University of Cambridge-Department of Engineering; PhD years 2-4, Universities of Cambridge, Oxford or Loughborough.
  EPSRC Centre for Doctoral Training in Future Propulsion and Power (MRes & PhD)

Funding Type

PhD Type

Location. MRes year 1, University of Cambridge-Department of Engineering; PhD years 2-4, Universities of Cambridge, Oxford or Loughborough.
  Power Generation in rural communities
  Prof M Pourkashanian
Application Deadline: 30 September 2019

Funding Type

PhD Type

For electrification projects to be successful, they must be suitable for the needs of the communities using them.
  Developing advanced models for future power generation technologies
  Prof M Pourkashanian, Prof L Ma
Application Deadline: 30 September 2019

Funding Type

PhD Type

Applications are invited for a competitive fully funded PhD Studentship starting in 2019. The studentship will support a highly motivated researcher to undertake cutting edge research on developing advanced models that are relevant to future energy and power generation technologies.
  Energy Management of Hybrid AC/DC Microgrids
  Research Group: Communication and Networks
  Dr G Mokryani
Applications accepted all year round

Funding Type

PhD Type

Microgrids are small, self-controlled systems embedding distributed energy resources and loads, which can be operated in either grid-connected or islanded mode.
  Investigating Noise in Ageing Cellular Power Stations
  Dr N Jones
Applications accepted all year round

Funding Type

PhD Type

PhD Project. Imperial College Mathematics. Student Background. Theoretical Physics, Mathematics/Statistics, Electrical Engineering (Biological knowledge not required).
  Durability analysis in hydrogen fuel cell vehicles
  Dr M Aleyaasin, Dr A ALIAKBAR JAMSHIDI FAR
Applications accepted all year round

Funding Type

PhD Type

In this project , the heavy duty hybrid electric vehicles is considered for the investigation. The propulsion in these trucks is based on parallel operation of a bank of lithium batteries and series of hydrogen fuel cells.
  Optimal Operation of Microgrids with High Penetration of Renewable Energy Sources and Energy Storage Systems
  Research Group: Communication and Networks
  Dr G Mokryani
Applications accepted all year round

Funding Type

PhD Type

The UK government’s commitment to cost-effective renewable energy as part of a diverse, low-carbon and secure energy mix requires consideration of gas and low-carbon transport fuels, nuclear power, carbon capture and storage, and renewable energy to provide energy security.
  To develop an advanced battery monitoring system for single or multi-cell batteries used in standby or emergency power systems
  Dr P Lefley, Dr J Rojas Siles
Applications accepted all year round

Funding Type

PhD Type

By working with the University of Leicester on this industrial MPhil, the company aims to create a new capability ‘in-house’ which will enable them bring their idea of a unique, new, intelligent battery monitoring system to life and have a product design that can then be manufactured and sold to its customers both nationally and further afield (exports to Europe and the USA).
  Emerging application of gas plasma technologies
  Dr F Iza
Applications accepted all year round

Funding Type

PhD Type

Gas plasmas generate reactive environments at low temperature that can trigger chemical and bio-chemical processes that are hard to initiate by other means.
  Advanced electron beam sources
  Dr F Iza
Applications accepted all year round

Funding Type

PhD Type

Electron beam technology is a unique technology that enables joining dissimilar and otherwise hard to weld metals with very precise and clean welds while minimizing the heating of the material outside the working area.
  PhD Studentship: Next-generation bio-fuels: optical and theoretical analysis of particulate formation
  Dr R Yang
Application Deadline: 29 September 2019

Funding Type

PhD Type

Application details. Reference number. RYWS2019. Start date of studentship. 1 January 2020. Closing date of advert. 30 September 2019.
  Track Before Detect Bayes (EPSRC CDT in Distributed Algorithms)
  Dr A Garcia-Fernandez, Prof V Alexandrov
Application Deadline: 31 August 2019

Funding Type

PhD Type

Please note this opportunity is only available to UK students. This studentship has been developed by the University of Liverpool and STFC’s Hartree centre in partnership with Leonardo.
  Digital soft contact lenses design and validation
  Dr A Abass, Prof A Elsheikh
Application Deadline: 20 June 2020

Funding Type

PhD Type

Soft contact lenses are medical devices largely used to correct the eye refractive error for more than 125 million people worldwide.
  Fast, reliable and secure wireless IoT chaos-based communication
  Dr M S Baptista
Applications accepted all year round

Funding Type

PhD Type

This PhD project tackles scientific issues aimed at creating and laying the mathematical foundations of an innovative Wireless IoT Communication System…
  Learning from the past to predict and reduce the risk of infectious disease pandemics
  Dr F Perez-Reche, Prof N Strachan
Applications accepted all year round

Funding Type

PhD Type

The World Health Organisation reports that infectious diseases cause 63% of childhood deaths and 48% of premature deaths. There is the ongoing risk of epidemics and pandemics that can cause widespread morbidity and mortality (Spanish flu, ebola, SARS, E.
  Modelling the deformation of cells
  Dr F Perez-Reche
Applications accepted all year round

Funding Type

PhD Type

Cells are the elementary building blocks of living organisms. The correct functioning of living organisms is therefore conditioned to the ability of living cells to withstand forces and deformations and to promptly adapt to their mechanical environment.
  Seismic history matching and machine learning, Edinburgh Time-Lapse Project
  Research Group: Institute of Petroleum Engineering
  Prof C MacBeth, Dr R Chassagne
Application Deadline: 1 October 2019

Funding Type

PhD Type

The current oil and gas fields are now challenging to produce and the time for easy extraction is gone. More complex and accurate representations of the field with models are required to take any decision concerning field development.
  2D and 3D Computational Imaging Through Turbulence
  Dr Y Altmann, Prof S McLaughlin, Prof G Buller
Applications accepted all year round

Funding Type

PhD Type

The main objectives of this computational PhD project are to develop new and ground-breaking methods for fast and robust 3D imaging and sensing.
  PhD in Algorithmic Approximate Computing
  Prof M Sellathurai, Dr J Mota
Application Deadline: 28 January 2020

Funding Type

PhD Type

Project description. The aim of this PhD project is to develop techniques for performing approximate computation in energy-constrained environments.
  Choosing Who Not To Die With AI: AI-enhanced risk stratification for implanted defibrillators
  Dr M Bishop, Dr P Lamata
Applications accepted all year round

Funding Type

PhD Type

Project summary. Clinical Motivation – Re-entrant ventricular arrhythmias are responsible for over 80,000 instances of sudden cardiac death (SCD) annually in the UK.
  Developing fluency in mathematical procedures
  Dr C Foster
Applications accepted all year round

Funding Type

PhD Type

Reference. MEC/CF-Un1/2019. School. School of Science. Location. Loughborough. UK/EU Fee band. Research Band 1 Classroom Based (£TBC).
  Modelling of Dislocation-Microstructure Interaction at a Short Crack Tip - Ref: LG1UF2018
  Dr L Zhao
Application Deadline: 3 May 2020

Funding Type

PhD Type

Nickel-based superalloys are particularly used in applications involving high temperatures and stresses, such as the critical gas-turbine blades and discs in aerospace and power-generation industries.
  4-year PhD studentship: Development of smartphone imaging technology for screening anaemia
  Dr T Leung
Application Deadline: 21 August 2019

Funding Type

PhD Type

This project aims to develop smartphone imaging techniques to provide a non-invasive, accessible way of diagnosing anaemia, which has wide ranging applications from home monitoring to deployment in low resource settings.
  PhD on nonlinear optics and laser physics in passive resonators
  Dr M Erkintalo, Assoc Prof S. G. Murdoch
Application Deadline: 28 November 2019

Funding Type

PhD Type

A fully funded PhD studentship is available starting as soon as possible to work on nonlinear optics in passive resonators. The resonant enhancement of laser light launched into an optical cavity can be leveraged to increase the strength of nonlinear light-matter interactions.
  A microstructure-informed model to predict the deformation and shear bands formed during a nickel superalloy machining operation
  Dr H Basoalto
Applications accepted all year round

Funding Type

PhD Type

The School of Metallurgy and Materials is seeking a high calibre candidate for a PhD studentship in materials modelling.
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