06 Aug
|
Scholar Nexus
|
Southampton
06 Aug
Scholar Nexus
Southampton
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Technical Innovation: The project integrates an Inductively Coupled Plasma (ICP) source for stable, pristine plasma generation with a Magnetohydrodynamic (MHD) acceleration system to achieve controlled high-velocity flows without electrode contamination.
Digital Twin Development: A high-fidelity computational model will be developed to provide real-time facility optimization and predictive capabilities, combining experimental diagnostics with physics-informed simulations.
Defense Applications: The research directly supports UK hypersonic defense resilience by enabling accurate characterization of re-entry emissions and thermal protection system performance under realistic conditions.
Sovereign Capability: Supported by the UK Space Agency, this project delivers critical national infrastructure for advanced aerospace testing and sustainable space operations. The successful candidate will work under the supervision of Professor Minkwan Kim and Professor Andrea Cammarano in the Faculty of Engineering and Physical Sciences. The project offers comprehensive funding including a tax-free stipend of up to £31,000 per year plus research and travel budgets.
Applicants must hold a UK 2:1 honours degree or international equivalent in a relevant engineering or physical sciences discipline.
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TwinEnvironmental Physicsaerothermodynamicshypersonicthermal protectionplasma wind tunnelMHD accelerationre-entry simulationdefense resilience Enhanced tax-free stipend of up to £31,000 per year plus research and travel budget UK 2:1 honours degree or international equivalent in engineering or physical sciences; applications welcome regardless of gender, ethnicity, disability, sexual orientation, or age Apply through University of Southampton's online system, selecting Research program type for 2026/27 entry, Faculty of Engineering and Physical Sciences, and including supervisor name in section 2 What are the entry requirements for this PhD position? You must have a UK 2:1 honours degree or its international equivalent in a relevant engineering or physical sciences discipline. How do I apply for this PhD position?
Apply through the University of Southampton's online system, selecting Research program type for 2026/27, Faculty of Engineering and Physical Sciences, and include the supervisor's name in section 2 of your application. What funding is available for this PhD position? The position offers an enhanced tax-free stipend of up to £31,000 per year (UKRI minimum plus £10,000) plus a substantial budget for research, travel, and centre activities.
What is the research focus of this PhD project? The project develops a dual-stage plasma wind tunnel combining Inductively Coupled Plasma and MHD acceleration to replicate Mach 12+ hypersonic conditions for defense and space applications. Who will supervise this PhD project?
The project will be supervised by Professor Minkwan Kim (lead supervisor) and Professor Andrea Cammarano in the Faculty of Engineering and Physical Sciences. What are the career prospects after completing this PhD? This project provides expertise in cutting-edge plasma physics, aerospace engineering, and computational modeling, positioning graduates for careers in defense, aerospace, and research institutions.
Is this position open to international students? The funding is specifically for UK domestic candidates only, as part of the TechExpert strand of the TechFirst skills programme. What is the work arrangement for this PhD position?
This is an on-site position requiring laboratory work at the University of Southampton's engineering facilities. What documents are required for the application? Applications should include your CV, 2 academic references, and degree transcripts and certificates to date.
More PhD Positions in Electrical Engineering- United KingdomMore PhD Positions in Electronics- United KingdomMore PhD Positions in Mechanical Engineering- United Kingdom University of Southampton Institution Website View Posting Loginto track your status and notes for this position Similar Positions Recommended for you PhD Dec 31, 2026 Csir-Ugc Jrf Phd Admissions India PhysicsData Science+19 PhD Dec 15, 2026 Fully Funded Phd Positions In Finland Finland international studentsstipend+4 PhD Sep 30, 2026 Phd In Hydrology/Hydraulics - Water Resource Management France water resource managementAI predictive analysis+3 PhD Dec 8, 2026 Rapid Host Response Testing For Infection Severity University of Southampton, United Kingdom Materials SciencePharmacology+11 PhD Nov 30, 2026 Low Noise Amplifier Design For Cryogenic Applications France cryogenic electronicsSiGe HBT+2 PhD Aug 5, 2026 Strategic Phd In Physics-Informed Ai For Thermal Energy Storage Technical University of Denmark, Denmark Physicsdeep learning+7 PhD Mar 6, 2027 Phd Thesis Student At Ill: Studying Polymerization Induced Self-Assembly By Neutron Scattering European Synchrotron Radiation Facility, France neutron scatteringsmall angle neutron scattering+6 PhD Aug 31, 2026 Fully Funded International Phd Programs Social SciencesEngineering+4 PhD Sep 4, 2026 Phd In Enzyme Discovery And Machine Learning Technical University of Denmark, Denmark GenomicsCrystallography+22 PhD Sep 30, 2026 Multimodal Foundational Models For Neuroscience France fMRIEEG+5 This PhD project addresses a critical gap in hypersonic testing capabilities by developing a novel dual-stage plasma wind tunnel that overcomes the limitations of existing facilities. The research focuses on creating a contamination-free testing environment capable of replicating true atmospheric re-entry conditions at Mach 12+ speeds.
Technical Innovation: The project integrates an Inductively Coupled Plasma (ICP) source for reliable, pristine plasma generation with a Magnetohydrodynamic (MHD) acceleration system to achieve controlled high-velocity flows without electrode contamination.
Digital Twin Development: A high-fidelity computational model will be developed to provide real-time facility optimization and predictive capabilities, combining experimental diagnostics with physics-informed simulations.
Defense Applications: The research directly supports UK hypersonic defense resilience by enabling accurate characterization of re-entry emissions and thermal protection system performance under realistic conditions.
Sovereign Capability: Supported by the UK Space Agency, this project delivers critical national infrastructure for advanced aerospace testing and sustainable space operations. The successful candidate will work under the supervision of Professor Minkwan Kim and Professor Andrea Cammarano in the Faculty of Engineering and Physical Sciences. The project offers comprehensive funding including a tax-free stipend of up to £31,000 per year plus research and travel budgets.
Applicants must hold a UK 2:1 honours degree or international equivalent in a relevant engineering or physical sciences discipline.
📌 Phd In Mhd-Enhanced Plasma Wind Tunnel Development (Southampton)
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