Engineering systems for real plant operation. Built around your facility to improve engineering confidence, operational clarity and plant performance.
Simulation is typically applied in engineering. Monitoring is used in operations. Between them, key system behaviour is lost. Measurements show what is happening, but not why.
Simulytica delivers engineering systems built around how industrial facilities actually operate.
Engineering projects require specialist simulation software, model development and significant engineering effort. From feasibility studies to equipment performance assessments, engineering teams often spend as much time building simulation environments as solving the engineering problem itself.
Simulytica delivers engineering analysis, operating studies, scenario evaluations and structured engineering reports. We also develop dedicated engineering systems, built on the Simulytica platform, incorporating existing models where available or creating them where required.
Integrated with existing customer environments, these engineering systems provide a shared platform for engineering teams, contractors and project stakeholders throughout the project lifecycle. Learn More
Founded by engineers with decades of experience across oil & gas and process industry, Simulytica develops engineering systems built specifically around the behaviour of industrial facilities, supporting engineering and operations.
We work with your team to capture engineering design data and system configuration before designing, building and deploying the system, eliminating the need for internal simulation projects, scripting and ongoing model maintenance.
From individual process units and compression systems to complete facilities, Simulytica delivers ready-to-run engineering systems for legacy and modern oil & gas and process environments, fully supported throughout their operational life.
The engineering system provides plant-wide operational views showing how facilities are behaving, not just what is measured.
Process conditions, controls, compression systems, and operational behaviour are presented together through plant-aware operational views aligned with how facilities actually operate.
Rather than disconnected dashboards and isolated trends, Simulytica presents operational behaviour within complete plant context.
Simulytica provides engineering systems designed around real plant operation.
Insight into performance, efficiency, constraints, and real plant behaviour across upstream facilities, including turbo‑machinery and compression systems.
Powered by Simulytica Origin®, Simulytica Confluent® and Thermolytica®
Operational intelligence for compressor stations, unmanned assets, transmission networks, gas storage, and remote critical infrastructure.
Powered by Simulytica Origin®, Simulytica Prism® and Simulytica Confluent®
Origin Operations continuously simulates and monitors the plant, providing real-time understanding of plant behaviour, performance and changing conditions.
Origin Operations runtime coordinates process, mechanical, electrical and control behaviour, including complex recycle and compression systems within full plant context. Adaptive intelligent solvers coordinate execution and accurately determine overall plant behaviour.
Origin Engineering Analytics supports engineering studies and what-if scenarios across the plant, from process and equipment to turbomachinery, compression trains, controls and recycle systems.
Where plant data is available, simulation and operating data is used to compare expected and actual behaviour, replay historical conditions and investigate plant and equipment performance.
Simulytica delivers a fully supported, ready-to-run engineering system built specifically around your facility, eliminating the need for internal model-building projects, tool configuration, scripting, and ongoing maintenance. Instead of building software models, your engineers can focus on understanding plant behaviour, improving performance, and making better operational decisions.
Instead of investing months building and maintaining engineering models, your team can focus on understanding plant performance, analysing operational behaviour, and making better engineering decisions from day one.
Simulytica brings process, control, and operating behaviour together within real plant context.
Traditional tools treat process control as an add‑on, simplified loops, limited dynamics, and minimal interaction with the wider process system. This makes it difficult to understand how control behaviour, constraints, and operating decisions shape real plant performance.
Simulytica represents control as part of the wider process system, modelling control loops, constraints, setpoints, recycles, and dynamic behaviour within full plant operating context.
OEMs provide compressor models and machine‑level monitoring, but they do not model compression within the wider process system. Traditional simulators are also limited because they do not solve the full compression system in plant context.
Simulytica extensively models complete compression systems including casings, trains, recycles, and anti‑surge, within full plant operating context, capturing their interactions with the surrounding process system.
Simulytica links operating conditions, system behaviour, and equipment performance, showing how the plant is actually performing, not just what is measured.
This reveals losses, constraints, and performance deviation that cannot be seen from measurements alone, supporting both live operation and engineering analysis.
Performance can be understood live or replayed across any dataset using Simulytica Origin Analytics.
As energy demand rises, efficiency and performance become operational priorities.
Understanding system behaviour enables better decisions and more reliable operation.
Simulytica is built from the ground up. Its high-performance architecture deploys intelligent solvers predicting and analysing plant performance, bringing together process, control, recycles, thermodynamics and turbomachinery within one engineering system.
This removes the need for multiple tools, fragmented integration projects, and per-user licensing models, replacing them with one engineering system accessible across the organisation.
Designed for real plant operation, not case‑by‑case simulation.
The core engines and applications that power Simulytica's engineering and operational systems.
High-performance thermodynamic engine underpinning Simulytica's continuously executing engineering systems.
The runtime engine that coordinates the behaviour of process, control, and compression systems across the plant.
Engineering applications for live operation, performance analysis and plant understanding.
Operational views that help teams understand systems hierarchies, not just dashboards.
Simulytica provides engineers and operators with an active understanding of operating conditions, system behaviour and performance.
This understanding is particularly valuable for remote assets, unmanned stations, and performance-critical operations, where decisions must often be made with limited visibility and little margin for error.
By revealing how the plant is behaving, not what is being measured, Simulytica helps engineers and operators make better-informed decisions, reducing operational uncertainty and supporting more reliable plant performance.
Simulytica is built on rigorously validated engineering data, drawn from trusted sources and established correlations. Every calculation is traceable across continuous operation or dataset replay.
All systems are extensively tested across real operating conditions to ensure accuracy and robustness.
Developed and applied in real industrial environments across oil & gas and process systems.
Founded by engineers with decades of experience across oil & gas, process industry, engineering and operations.
This experience is embedded in a system that solves process, control, thermodynamics, and compression systems together, continuously.
Simulytica combines high-performance physics-based engineering systems with intelligent system-level solving across interacting process, compression, recycle, and control behaviour, designed for efficient engineering analysis and operational understanding.
Every facility is different. We work with your engineering and operations teams to understand your plant, priorities and performance challenges, and identify where Simulytica can deliver the greatest value.