Industrial Facilities Need One Coordinated Runtime
Traditional industrial environments rely on disconnected simulators, monitoring platforms, controls, OEM systems, thermodynamic engines, and separate operational and engineering workflows operating independently across facilities.
Engineering systems are only as good as the runtime that coordinates them. Confluent was developed to execute entire engineering systems as one continuously coordinated operational environment rather than a collection of disconnected models and tools.
Confluent Handles Continuously Changing Plant Behaviour
Turbomachinery, compression systems, recycles, control, thermodynamics, and changing process conditions continuously influence the wider plant behaviour.
As operating conditions change, interaction between process systems, compression trains, control, anti-surge systems, and recycles affects system behaviour and response across oil & gas and process facilities.
Confluent coordinates these continuously changing plant interactions within one runtime, while keeping track of operational history which supports predictive solving as operating conditions change.
Industrial facilities represented as executable engineering systems rather than disconnected models.
Operational interaction across recycles, controls, compression systems, and changing plant conditions.
Continuous interaction across trains, casings, anti-surge systems, and wider process behaviour.
Designed for multicore execution across large industrial facilities, making viable digital twins practical at plant scale.
Scalable Architecture Across Oil & Gas and Process Facilities
Confluent is designed for scalable multicore execution across interacting industrial environments supporting live operation, engineering analysis, simulation, and monitoring within one integrated execution architecture.
Confluent scales from individual assets and compression trains to complete industrial facilities while coordinating continuously interacting process, compression, control, recycle, and thermodynamic behaviour.
Confluent enables engineering systems to scale from individual assets to complete industrial facilities without relying on fragmented models or disconnected operational workflows.
From Fragmented Models to Executable Engineering Systems
Confluent transforms industrial facilities into executable systems across process, compression, controls, thermodynamics, and plant interaction.
The Runtime Behind Every Simulytica Engineering System
Confluent powers Simulytica Origin® operational systems and Prism® plant views through coordinated execution across interacting industrial environments.
Integrated with Thermolytica® multicore thermodynamic execution, Confluent continuously coordinates interacting plant behaviour across process systems, compression trains, controls, recycles, and live operational environments.
This enables operational systems and plant views aligned with real plant behaviour rather than disconnected simulations, isolated thermodynamic engines, and fragmented operational environments.
Explore Confluent execution architecture with Simulytica
Explore How Confluent Powers Your Engineering System
