Services
Industrial Processes and Fluid Mixing
At Slidian , we evaluate the internal behavior of industrial equipment and reactors through advanced simulations, ensuring proper operation and defining the most suitable design configuration to maximize process efficiency.
Our studies provide detailed analysis of transport and mixing phenomena occurring within the equipment, optimizing both operational performance and the geometry and arrangement of internal components.
Realistic Process Modeling
We consider all fluids involved in the process, reproducing real operating conditions as accurately as possible, including:
Inlet and outlet flow rates
Operating temperatures
Fluid physical properties
Fluid state (liquid, gas, multiphase mixture, etc.)
When dispersed particles or suspended solid phases are present, their behavior is also incorporated into the model, allowing evaluation of transport, dispersion, and potential deposition phenomena.
Injector and Diffuser Design Optimization
One of the key aspects of many industrial systems is the proper configuration of injection and diffusion systems.
By accurately reproducing the arrangement of injectors and diffusers within the equipment, we simulate fluid entry and exit under real operating conditions, including operating sequences when required by the process.
These simulations make it possible to:
Determine the optimal injection configuration
Design the most appropriate geometry and orientation
Evaluate different operating conditions
Improve mixing and internal distribution
Increase overall process efficiency
The result is an optimized design that maximizes performance while reducing losses and inefficient regions.
Concentration and Process Variable
Analysis at Equipment Outlets
Analysis at Equipment Outlets
CFD simulations enable detailed analysis of flow dispersion and mixing within industrial equipment, evaluating conditions both at outlet locations and in any area of interest.
This allows highly accurate calculation of variables such as:
Final component concentrations
Velocity distributions
Temperature fields
Pressure gradients
Species and reactant evolution
This type of information is extremely difficult to obtain through analytical methods or direct measurements, making CFD simulation a fundamental tool for the design and validation of industrial equipment.
Request your CFD simulation study.
España
Baixada Gándara 16,
36331 Vigo
Spain
+34 886113547
hello@slidian.com
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