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Multiphysics Simulations

Simulate Coupled Physical Phenomena for More Accurate Engineering Predictions

Many engineering systems cannot be accurately represented by a single physical phenomenon. Instead, they involve the simultaneous interaction of fluid flow, heat transfer, structural behaviour, electromagnetics, chemical reactions, or electrochemical processes. These coupled interactions often determine the actual performance, efficiency, durability, and safety of a product or process. Multiphysics Simulations enable engineers to capture these interactions within a unified computational model before prototypes are built or systems are deployed.

At Experiqs, we perform advanced Multiphysics Simulations that integrate multiple engineering disciplines into a single simulation environment. By coupling different physical phenomena, we help engineers predict real-world system behaviour more accurately, optimize product designs, validate engineering concepts, and reduce development time across industries including automotive, aerospace, electronics, energy, chemical processing, and advanced manufacturing.

Multiphysics Engineering Simulation Assembly
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Why Multiphysics Simulations?

Engineering systems rarely operate under isolated physical conditions. Heat affects material properties, fluid flow influences thermal performance, electrochemical reactions generate heat, and multiple physical processes continuously interact throughout a product’s lifecycle. Analyzing these effects independently may overlook critical interactions that influence overall system behaviour.

Multiphysics Simulations enable engineers to evaluate these coupled phenomena during the design stage. By accurately representing real operating conditions, engineering teams can improve prediction accuracy, optimize system performance, identify potential design issues early, and reduce the need for costly physical testing.

Our Multiphysics Simulation Services

Our Multiphysics Simulation capabilities combine multiple physical domains within a single computational model, enabling comprehensive engineering analysis for complex systems where several interacting phenomena determine overall performance.

Fluid-Structure Interaction (FSI) Simulation

Conjugate Heat Transfer (CHT) Simulation

Thermo-Mechanical Simulation

Electrochemical-Thermal Simulation

Thermal-Fluid-Structural Simulation

Aeroelastic Simulation

Fluid-Thermal Simulation

Talk to Our Engineering Team

Whether you’re evaluating coupled thermal and fluid interactions, optimizing electrochemical systems, or validating complex engineering products where multiple physical phenomena interact simultaneously, our engineers can help identify the appropriate Multiphysics simulation approach for your application.

Multiphysics Turbine Simulation Cutaway

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Let’s Start an R&D Discussion

Whether you’re exploring a new R&D initiative, seeking advanced simulations, planning experimental validation, or evaluating product feasibility—our experts are ready to assist you.

Let’s Start an R&D Discussion

Whether you’re exploring a new R&D initiative, seeking advanced simulations, planning experimental validation, or evaluating product feasibility—our experts are ready to assist you.