This case study focuses on modelling Exhaust Gas Recirculation (EGR) using Flownex to design and evaluate both application-based and surrogate systems for a 3.5 MWe gas turbine, enabling carbon capture feasibility and system optimization.
More Case Studies
You might also be interested in these CASE STUDIES
CS-083_Dynamic Modelling of a Sodium-Cooled Fast Reactor During a Loss-of-Flow Event
This case study describes how Flownex was used to model axial turbines stage-by-stage using a nozzle-based approach that reproduces turbine behavior accurately even when limited geometric data is
CS-089: Simulating Tailings Transfer Upgrades
This case study describes how Flownex was used to model axial turbines stage-by-stage using a nozzle-based approach that reproduces turbine behavior accurately even when limited geometric data is
CS-082: Accurate Stage by Stage Axial Turbine Modelling with Minimal Geometry
This case study describes how Flownex was used to model axial turbines stage-by-stage using a nozzle-based approach that reproduces turbine behavior accurately even when limited geometric data is
CS-080:Predicting Combustor Wall Temperatures Using Thermal Fluid Network Modelling
This case study shows how Flownex thermal-fluid network model was used to predict the temperature distribution along the conical bluff body of an academic combustor. The model is
CS-078: Emergency Vent Flare Ice Build-Up Estimation
This case study shows how Flownex was used to evaluate and optimize condensate extraction pump (CEP) flow control at a 4100 MW coal-fired power station. The plant originally
CS-077: Optimization of condensate extraction pump’s flow control
This case study shows how Flownex was used to evaluate and optimize condensate extraction pump (CEP) flow control at a 4100 MW coal-fired power station. The plant originally
