AMELA Process Optimization
AMELA/Engineering
Engineering

Make better engineering decisions before you build.

AMELA combines engineering expertise, physically grounded models, simulation and optimization to investigate relevant alternatives and substantiate the strongest route.

Discuss your engineering challenge

For complex design, process, asset and system challenges.

The complication

A technically plausible solution is not automatically the best choice.

In complex technical systems, a change rarely affects just one point. Production, safety, reliability, time, cost and other system components influence one another.

Production

An intervention can affect capacity, availability and daily operation.

Safety

New configurations require a careful assessment of risks and constraints.

Reliability

An improvement in one place can create new constraints or vulnerabilities elsewhere.

Time

There is limited room to test alternatives in a live installation.

Cost

Investment, operation and the consequences of downtime need to be considered together.

System interactions

The full consequences of a choice often become visible only after implementation.

In complex systems, it is not only whether a solution works that matters, but how it performs against the relevant alternatives.

Technical choices

The questions you want answered before a technical intervention.

Do not start with a solution; start with the technical choice in front of you.

Asset performance

Which intervention will measurably improve an existing installation?

Investigate performance, constraints and improvement opportunities before changing or replacing assets.

CFD and flow engineering

What happens to flow, heat and pressure when you change the installation?

Make physical interactions visible and compare design, layout and setting choices.

Process and system optimization

Which change delivers the most value within your operation?

Compare technical routes across performance, reliability, risk and relevant cost.

Strategic engineering

How do you substantiate a complex transition or technology choice?

Structure options, test assumptions and translate technical analysis into a defensible decision.

Why AMELA

A strong technical choice needs more than a good model.

01

Understand what is technically relevant.

We combine domain knowledge and system understanding to clarify the relevant physics, constraints, interactions and alternatives.

02

Examine alternatives on the same basis.

With physically grounded models, simulation and, where relevant, optimization, we systematically investigate how different routes perform.

03

Show why one route is stronger.

Assumptions, performance, trade-offs and limitations remain traceable, so the preferred route can be defended technically.

Test it virtually first

Investigate the change before entrusting it to reality.

Virtual Prototyping is not a standalone product, but a core part of how AMELA approaches engineering challenges.

The real system

One physical route

Changes to a live installation affect production, safety, time and budget.

  • Limited room to test relevant alternatives
  • Operational risk and potential downtime
  • Consequences often become fully visible only after implementation

The virtual prototype

Multiple scenarios

A relevant digital representation helps investigate system interactions before implementation.

  • Investigate multiple technical alternatives
  • Make interactions and consequences visible earlier
  • Compare design choices on the same basis
  • Substantiate the preferred route with evidence

Test where possible before implementation, so avoidable risk becomes more visible.

The AMELA method

From the real system to a substantiated decision.

The method follows the technical question and the system — not the other way around.

Understand

Map the system, objective and constraints.

Use the operating context, engineering knowledge and relevant constraints as the starting point.

Model

Build a relevant virtual representation.

Translate important physical behaviour and system interactions into a model fit for the decision.

Compare & substantiate

Investigate scenarios and make the strongest route visible.

Compare alternatives, performance and trade-offs, and substantiate why one route is preferred.

The method makes engineering expertise more powerful: not simply a plausible solution, but a traceable choice between relevant alternatives.

Engineering in practice

AMELA case

Transition to PFAS-free firefighting foam in oil and gas.

With Virtual Prototyping AMELA mapped pressure loss, pump load and system behaviour up front, making clear which technical changes were needed for a safe, optimal PFAS-free installation.

Explore our PFAS transition approach

The decision

Which changes are needed for a safe PFAS-free installation?

Why difficult

New foam types change pressure and flow throughout the system.

Approach

Modelling pressure loss and pump load, comparing alternatives.

Outcome

A substantiated, safe investment decision.

Different engineering problem. Same decision challenge.

View more cases