
AVEVA Reactor Models is a comprehensive suite of digital twin solutions for refinery and petrochemical plant reactor units. These models accurately predict plant behavior across various feed, catalyst, and operating conditions, enabling informed engineering, operational, and business decisions. The portfolio covers all major reactors in a typical refinery, including Fluid Catalytic Cracking (FCC), Hydrotreating, Hydrocracking, Resid Hydrodesulfurization (RHDS), Catalytic Reforming, Alkylation, Delayed Coking, Visbreaking, and Light Naphtha Isomerization. These models are essential component...
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AVEVA Group
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AVEVA Reactor Models is a suite of digital twin solutions designed for refinery and petrochemical plant reactor units. These models are integral components of AVEVA's ROMeo Process Optimisation software, offering plant-wide optimization capabilities2. The reactor models accurately predict plant behavior under various conditions, enabling refiners and plant operators to make informed decisions and capture full benefits from their reaction processes.
Key Features
Comprehensive Reactor Model Portfolio The portfolio covers all major reactors in a typical refinery, providing a complete digital twin solution.
- Models for FCC, Hydrotreating, Hydrocracking, RHDS, Catalytic Reforming, Alkylation, Delayed Coking, Visbreaking, and Light Naphtha Isomerization
- Plant-wide optimization solution for increased refining profits
Rigorous Kinetic Modeling Accurate prediction of plant behavior across a wide range of conditions.
- Structure-oriented lumping (SOL) technology for detailed feed and product characterization
- Modeling of inhibition effects and specific process parameters
Benefits
Enhanced Decision Making Provides up-to-date information for informed engineering, operational, and business decisions.
- Supports offline simulation, process engineering debottlenecking, and LP vector generation
- Enables performance monitoring and real-time optimization (RTO)2
Improved Refinery Efficiency Optimizes various refinery processes to increase overall efficiency and profitability.
- Optimizes feed train, crude processing, vacuum units, and catalytic processes
- Improves process monitoring, optimization, utilities management, and planning