The KSLP platform

Connected physics.
Smarter engineering.

Our aim is to bring nuclear modelling, multiphysics simulation and design exploration into one engineering environment.

Our platform vision

One workflow.
A wider perspective.

Our aim is to make it easier to move between a reactor concept, its interacting systems and the design choices that shape performance.

Fusion energy

  1. 01

    Concept

    Define the reactor concept

  2. 02

    Plasma

    Explore plasma behaviour

  3. 03

    Engineering

    Connect heat and materials

  4. 04

    Plant

    Map energy conversion

  5. 05

    Design studies

    Compare alternatives

Fission energy

  1. 01

    Core

    Define the reactor core

  2. 02

    Fuel cycle

    Explore fuel evolution

  3. 03

    Cooling

    Connect thermal response

  4. 04

    Shielding

    Study component protection

  5. 05

    Design studies

    Compare alternatives

Integrated systems

  1. 01

    Sources

    Define energy inputs

  2. 02

    Conversion

    Connect power systems

  3. 03

    Loads

    Account for plant demand

  4. 04

    Heat management

    Explore cooling options

  5. 05

    Net output

    Compare energy balances

The aim: connect models, explore alternatives and bring the whole system into view.

What we are working towards

More connected tools.
More room to explore.

A common environment for the questions that cross engineering disciplines.

01 / CONNECT

Bring disciplines together

Connect reactor physics with thermal, structural and plant-level models in a shared design workflow.

02 / EXPLORE

Compare more possibilities

Make parameter studies and optimisation a natural part of exploring energy systems.

03 / UNDERSTAND

See the whole system

Connect component behaviour with the energy flows and operating scenarios of a virtual plant.

Our roadmap

From a design concept
to a virtual plant.

Our goal is to connect the full engineering journey. Four priorities guide the platform we are building.

01Connected simulationBring the tools together

Bring fusion and fission modelling into a shared workspace, with connected workflows for experiments and comparisons.

Aim / One engineering workspace
02Coupled engineeringConnect the physical systems

Link reactor behaviour with cooling, materials and shielding to explore the interaction between components.

Aim / A system-wide perspective
03Design explorationFind promising directions

Expand parameter studies, optimisation and sensitivity analysis to compare alternatives and understand design trade-offs.

Aim / Better-informed design choices
04Virtual plantExplore behaviour over time

Bring dynamic models, virtual diagnostics and simulated control together to investigate operating scenarios before physical implementation.

Aim / Connected virtual experiments