collaborators

5 papers

physics.comp-ph2026

Exploring Neural Network Surrogates for High-Order Mesh-Free Interpolants

Lucas Gerken Starepravo, Georgios Fourtakas, Steven Lind +2

Mesh-free numerical methods offer flexibility in the discretisation of complex geometries, showing significant potential for problems where mesh-based methods struggle. Although hi…

math.NA2025

A p-adaptive high-order mesh-free framework for fluid simulations in complex geometries

Ruofeng Feng, Jack R. C. King, Steven J. Lind

This paper presents a novel p-adaptive, high-order mesh-free framework for the accurate and efficient simulation of fluid flows in complex geometries. High-order differential opera…

quant-ph2025

Quantum smoothed particle hydrodynamics algorithm inspired by quantum walks

R. Au-Yeung, V. M. Kendon, S. J. Lind

Recent years have seen great progress in quantum computing, providing opportunities to overcome computational bottlenecks in many scientific applications. In particular, the inters…

physics.flu-dyn2025

Uncertainty in Elastic Turbulence

Jack R. C. King, Robert J. Poole, Cláudio P. Fonte +1

Elastic turbulence can lead to to increased flow resistance, mixing and heat transfer. Its control -- either suppression or promotion -- has significant potential, and there is a c…

physics.flu-dyn2025

A new complex fluid flow phenomenon: Bubbles-on-a-String

Thomas P. John, Jack R. C. King, Steven J. Lind +1

A liquid jet plunging into a quiescent bath of the same liquid is a fundamental fluid mechanical problem underpinning a range of processes in industry and the natural world. Signif…