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DIMECHAIN

Research programmes

Fluid-simulation methodsStatus: research

Hybrid quantum-classical exploration for flow and turbulence workloads.

Overview

  • An active research programme into hybrid representations of correlated flow structures, run as six stages from parameterisation through to export.
  • Integrates with the CFD tooling teams already use, rather than asking them to leave it.
  • No benchmarked speedup, accuracy or energy figure is claimed. Earlier published numbers were withdrawn pending a reproducible benchmark and review pack.

Part of Quantum & Advanced Computing.

How it works

Real components only. Anything not listed here does not exist yet.

  1. 01

    Fluid parameterisation

    Velocity, pressure, density, vorticity and energy mapped to quantum observables

  2. 02

    Quantum encoding

    Amplitude, phase and entanglement representations of the field

  3. 03

    Variational solver

    Navier–Stokes and Hamiltonian formulations under energy minimisation

  4. 04

    Annealing optimisation

    Boundary, turbulence and thermodynamic parameter optimisation

  5. 05

    Classical refinement

    Neural PDE refinement, noise correction and hybrid iteration

  6. 06

    Visualisation & export

    3D fields, animation and OpenFOAM / ParaView export

Specs

Actual limits, not aspirations. Where a row is missing, the number has not been measured or cleared for publication.

No specification is published for this product yet. We would rather show an empty table than numbers we cannot reproduce on request. Ask us directly and we will tell you what the current limits are.

Access

Research programme. We collaborate with groups working on simulation problems in this space; there is nothing to license.

Want to pilot Fluid-simulation methods?