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Data Center Cooling System Simulation with GT-SUITE Optimization, Fault Detection, and Digital Twin Deployment 

EVENT DETAILS

Date: Sept 24 | 8AM Central

Format: Online Webinar + QA

 

As the final installment of our series, this webinar demonstrates the scope and scale of GT-SUITE's data center simulation capabilities, spanning from the chip level all the way to the chiller plant. Having explored microgrid architecture, energy infrastructure, and electrical-thermal power systems in earlier sessions, we now close the loop with an integrated, end-to-end view of the AI data center as a single, interconnected cooling system.

AI factories demand more than isolated subsystem analysis. Thermal constraints at the silicon level propagate through cooling loops, power distribution, and facility infrastructure, while performance changes in any part of the thermal chain can impact reliability, efficiency, and operating costs across the entire facility. In this session, we demonstrate how GT-SUITE enables a unified chip-to-chiller workflow, allowing engineers to model component behavior in high fidelity, optimize cooling system performance within the context of the complete data center, and evaluate how component-level decisions influence overall system operation.

The session will also showcase how integrated models can be used to study interdependencies, fine-tune control strategies, and minimize power and water consumption while maintaining reliable performance. Attendees will see how physics-based simulation supports both the design and operational phases of the data center lifecycle, from identifying and characterizing failure modes before deployment to detecting anomalies in live assets and mitigating downtime through real-time monitoring.

Finally, we will demonstrate how GT-SUITE models transition from design tools to operational digital twins, enabling continuous performance tracking, predictive maintenance, and seamless integration with SCADA and facility management systems. Whether you are designing a new facility, qualifying a retrofit, or managing an operational AI cluster, this session highlights how physics-based simulation bridges early-stage design decisions with real-world operational outcomes, helping organizations improve efficiency, reliability, and resilience across the entire data center.

 

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Jake How

Senior Staff Engineer, Applications Engineering
 
 
 
Jake holds a B.S. in Mechanical Engineering from the University of Illinois Urbana-Champaign and an M.S. in Mechanical Engineering from Stanford University. With eight years at GT, Jake serves as a Thermal Fluids Application Engineer focused on data center cooling solutions and is passionate about innovation and sustainability. 
 
 
Phil Mireault is a Senior Application Engineer at Gamma Technologies with a background in vehicle performance simulation, systems engineering, and model-based development. He works with customers to deploy digital twin solutions built on GT-SUITE, specializing in systems integration, data exchange, and connecting simulation models with operational and enterprise software environments. As Product Owner for GT-RealDrive and a member of the Mobility Systems & Integration team, Phil has extensive experience helping organizations transform engineering models into practical, scalable applications. 
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Phil Mireault

Senior Application Engineer, Mobility Systems & Integration