EPSRC logo
Researcher Details
 
Name: Professor KH Luo
Organisation: UCL
Department: Mechanical Engineering
Current EPSRC-Supported Research Topics:
Computer Sys. & Architecture Fundamentals of Computing
Materials Characterisation Mathematical Analysis
Parallel Computing Software Engineering

Current EPSRC Support
EP/X035875/1 UK Consortium on Mesoscale Engineering Sciences (UKCOMES)(P)
EP/W026260/1 SysGenX: Composable software generation for system-level simulation at Exascale(C)
EP/W007711/1 Software Environment for Actionable & VVUQ-evaluated Exascale Applications (SEAVEA)(C)
Previous EPSRC Support
EP/W007460/1 Integrated Simulation at the Exascale: coupling, synthesis and performance(C)
EP/T015233/1 Mechanisms and Synthesis of Materials for Next-Generation Lithium Batteries Using Flame Spray Pyrolysis(P)
EP/V001531/1 Exascale Computing for System-Level Engineering: Design, Optimisation and Resilience(P)
EP/S012559/1 Enhancement and Control of Turbulent Reactive Flows via Electrical Fields - A Mesoscopic Perspective(P)
EP/R029598/1 UK Consortium on Mesoscale Engineering Sciences (UKCOMES)(P)
EP/P022243/1 "HiLeMMS": High-Level Mesoscale Modelling System(C)
EP/J020184/2 Computational Modelling and Optimisation of Carbon Capture Reactors(C)
EP/J016381/2 Thermal and Reactive Flow Simulation on High-End Computers(P)
EP/K024876/1 HIGH PERFORMANCE COMPUTING SUPPORT FOR UNITED KINGDOM CONSORTIUM ON TURBULENT REACTING FLOWS (UKCTRF)(P)
EP/I016570/2 Tackling Combustion Instability in Low-Emission Energy Systems: Mathematical Modelling, Numerical Simulations and Control Algorithms(P)
EP/L000261/1 UK Turbulence Consortium(C)
EP/L00030X/1 UK Consortium on Mesoscale Engineering Sciences (UKCOMES)(P)
EP/J020184/1 Computational Modelling and Optimisation of Carbon Capture Reactors(C)
EP/J016381/1 Thermal and Reactive Flow Simulation on High-End Computers(P)
EP/I016570/1 Tackling Combustion Instability in Low-Emission Energy Systems: Mathematical Modelling, Numerical Simulations and Control Algorithms(P)
EP/I012605/1 Laser-Induced Forward Transfer Nano-Printing Process - Multiscale Modelling, Experimental Validation and Optimization(P)
EP/I000801/1 HECToR-enabled Step Change in Turbulent Multiphase Combustion Simulation(P)
EP/G034281/1 Collaborative Research in Energy with South Africa:Scale-up modelling to answer Pyrolysis Challenge(C)
EP/G069581/1 UK Turbulence Consortium(C)
EP/E011640/1 Study of Vitiated Turbulent Combustion for Low-Emission High-Efficiency Hybrid Energy Systems(P)
EP/D080223/1 Consortium on Computational Combustion for Engineering Applications(P)
EP/D044073/1 UK Turbulence Consortium(C)
GR/R85303/02 Large Eddy Simulation and Control of Aeroacoustics(P)
GR/S69122/01 Critical & Transient Phenomena in Self-Sustained Buoyant Turbulent Diffusion Flames(C)
GR/R85303/01 Large Eddy Simulation and Control of Aeroacoustics(P)
GR/R66197/01 Consortium on Computational Combustion for Engineering Applications(P)
GR/R64957/01 UK Turbulence Consortium.(C)
GR/N36097/01 SOUND RADIATION FROM FREE SHEAR FLOWS(C)
GR/N17171/01 CONTINUOUS WIRE CASTING-FOR COST EFFECTIVE MANUFACTURE OF WIRES, ALLOYS, COMPOSITES AND NET-SHAPES(C)
GR/M08424/02 UK TURBULENCE CONSORTIUM(C)
GR/M08424/01 UK TURBULENCE CONSORTIUM(C)
GR/L67271/01 DIRECT SIMULATION AND MODELLING OF FIRE PLUMES(P)
GR/L58699/01 LARGE EDDY SIMULATION AND MODELLING OF BUOYANT PLUMES AND SMOKE SPREAD IN ENCLOSURES(P)
GR/L56237/01 DNS-BASED SUBGRID-SCALE MODELLING FOR LARGE-EDDY SIMULATION OF COMPRESSIBLE FLOW(P)
GR/K84516/01 MECHANISMS OF STABILIZATION OF PARTIALLY PREMIXED DIFFUSION FLAMES(C)
GR/K93761/01 SUPERCOMPUTER TIME FOR TWO DIRECT NUMERICAL SIMULATION PROJECTS(P)
Key: (P)=Principal Investigator, (C)=Co-Investigator, (R)=Researcher Co-Investigator