Platform

Thermolytica®

Thermodynamics for Realtime Operational Systems

Thermolytica provides high-performance operational thermodynamics for oil & gas and process systems, supporting complex equations of state, multi-phase flash, trusted engineering data, ACM integration, and scalable runtime execution within continuously executing plant systems.

Operational Thermodynamics

Thermodynamics Built for Real Engineering Environments

Thermolytica is designed for the thermodynamic demands of oil & gas and process industries, supporting turbomachinery, LNG systems, operational tuning and OEM-aligned engineering environments.

It supports pure-component data, configurable binary interaction parameters, complex equations of state, ACM integration and multi-phase flash calculations within one extensible thermodynamic execution environment.

Unlike isolated thermodynamic libraries and standalone property packages, Thermolytica operates as an integrated operational thermodynamics system designed for continuously executing plant environments.

Engineering-grade thermodynamics for operating facilities
Thermolytica Capabilities

Configurable thermodynamic execution across real plant systems

Complex EOS & ACM

Support for advanced equations of state, ACM integration, and extensible thermodynamic models.

Trusted Engineering Data Sources

Highly tested component data, trusted thermodynamic sources, and validated engineering datasets.

Multi-Phase Flash

Thermodynamic flash capability across complex phase behaviour and operating conditions.

Customisable Thermodynamics

Binary interaction parameters configurable for specific fluids, equipment, applications, and operational requirements.

Integration with Confluent®

Thermodynamics Coordinated Within Plant Execution

Thermolytica provides the physical foundation that allows continuously executing operational systems to represent real plant behaviour accurately.

Thermolytica works with Confluent to provide thermodynamic execution inside interacting plant systems rather than isolated property calculations.

This enables process systems, compression trains, recycles, controls, and operating conditions to use thermodynamics continuously as part of one executable operational architecture.

Confluent enables scalable execution across complex industrial facilities without relying on fragmented models, isolated simulation environments, or disconnected operational workflows.

Thermodynamics integrated into live plant behaviour

Thermodynamics Inside Continuously Executing Plant Systems

Thermolytica supports realtime operation across compressors, LNG, process facilities, operational tuning, and OEM-aligned engineering environments.

Runtime Thermodynamic Execution

Designed for Continuous Plant Execution

Thermolytica is built on trusted and tested engineering datasets, supporting realtime operation, parallel processing and multi-threading.

This allows high-performance thermodynamics to operate continuously across live plant environments, engineering analysis, simulation, monitoring, turbomachinery, LNG systems, and complex process interaction without relying on isolated thermodynamic calculations.

Thermodynamic execution at operational scale
Engineering Trust & Customisation

Customisable Thermodynamics for Specific Operating Requirements

Real engineering environments often require more than standard property packages. Thermolytica supports extensible component data, configurable binary interaction parameters, multiple data sources, and application-specific thermodynamic configurations.

This supports compressors, LNG systems, process facilities, equipment-specific tuning, and OEM-aligned engineering requirements.

Trusted thermodynamics for real operational systems
Executive Briefing

See How Thermolytica Powers Plant Execution

Discuss operational thermodynamics, complex EOS models, multi-phase flash, BIP configuration, trusted data sources, and runtime thermodynamic execution for oil & gas and process facilities.