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We have 10 Fluid Mechanics (stress) PhD Projects, Programmes & Scholarships

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Fluid Mechanics (stress) PhD Projects, Programmes & Scholarships

We have 10 Fluid Mechanics (stress) PhD Projects, Programmes & Scholarships

Parameterising wakes for oceanographic models

This Research Project is sponsored by the Centre for Environment Fisheries and Aquaculture Science (CEFAS) and is part of the EPSRC CDT in Offshore Wind Energy Sustainability and Resilience’s Predicting Offshore Wind wake interactions for Energy and the enviRonment (POWER) Cluster. Read more

Microfluidic-assisted particle manipulation in complex fluid environments for biomedical and engineering applications

We are delighted to offer two new PhD positions (one experimental and one numerical) on “particle manipulation in complex fluid environments for biomedical and engineering applications” at Department of Mechanical and Aerospace Engineering - University of Strathclyde. Read more

Modelling blood motion in deformable vessels

This project aims to introduce a novel approach in studying blood flow in deformable vessels by simultaneously considering both the fluid (blood) and the structure (vessel) through analytical and numerical approaches. Read more

Computational Studies of Haemodynamic Properties in Arteriovenous Fistula and Peripheral Arteries

Understanding the haemodynamic properties in coronary artery and renal dialysis venous access (DVA) in patients will help to improve the performance and longevity of renal DVA and coronary stent which underpins the life supporting haemodialysis techniques. Read more

Advanced computational modelling of nanobubble cavitation dynamics

Rapid changes in pressure, such as in high-frequency ultrasound, can stimulate bubbles to nucleate, oscillate, and collapse violently, in a phenomenon known as cavitation. Read more

Exploring the Interplay of Computational Mechanics, Fluid Dynamics, and Thermal Analysis in Engineering Systems

Our research group in school of Engineering Technology and Design (ETD) at Canterbury Christ Church University (CCCU) focuses on cutting edge projects at intersection of computational mechanics, computational fluid dynamics (CFD), thermal analysis and fluid-structure interaction (FSI). Read more

Exploring Advanced Materials for Mitigating Cavitation Damage

Supervisory Team.   Ivo Peters. Project description. Cavitation damage poses a substantial threat to equipment across various industries, impacting performance, increasing maintenance costs, causing downtime, and posing safety and environmental risks. Read more

Behaviour of Granular Materials

Granular materials such as sand, snow, rice, ores, powders and soils are prevalent in nature and industry. Understanding the way they deform, fail, flow and mix is key to predict events such as landslides, erosion, earthquakes and snow avalanches. Read more
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