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Simcenter Star CCM+
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Simcenter Star CCM+
To accurately predict real-world performance of your product you need simulation tools that capture all of the physics that will influence its performance during its operational life, including those that cross the boundaries of traditional engineering disciplines. To improve your product you need to be able to predict how performance changes in response to multiple parametric design changes.
Simcenter STAR-CCM+ is a complete multiphysics solution for the simulation of products and designs operating under real-world conditions. Uniquely, Simcenter STAR-CCM+ brings automated design exploration and optimization to the simulation toolkit of every engineer, allowing you to efficiently explore the entire design space instead of focusing on single point design scenarios.
The additional insight gained by using Simcenter STAR-CCM+ to guide your design process ultimately leads to more innovative products that exceed customer expectations.
Empowering graduates to deliver a better tomorrow
Simcenter for Educators
Simcenter offers dedicated bundles for academic institutions to fill the current skills gaps and meet job market demand.
Design Exploration
Design exploration software takes simulation to the next level by allowing users to determine appropriate values of variables that yield product designs that result in exceptional performance.
Electrochemistry Simulation
Significantly improving a battery design across its whole operating range is a challenging task, and involves the simultaneous optimization of numerous parameters.
Fluid dynamics simulation
Simcenter provides industry leading computational fluid dynamics software allows you to simulate almost any engineering problem
Moving Objects
Design exploration software takes simulation to the next level by allowing users to determine appropriate values of variables that yield product designs that result in exceptional performance.
Multiphase Flow
Significantly improving a battery design across its whole operating range is a challenging task, and involves the simultaneous optimization of numerous parameters.
Particle flows
Significantly improving a battery design across its whole operating range is a challenging task, and involves the simultaneous optimization of numerous parameters.