Thermal management for refrigerant-based, coolant-based, and air-based systems, including complete vehicle-level simulations.
We specialize in thermal management including complete vehicle-level simulations that combine several systems for overall optimization. In-depth analysis and optimization of heat flow across various vehicle systems, including electric, hybrid, and conventional vehicles.
We enable manufacturers to reduce cooling and heating inefficiencies while complying with regulatory standards.
Optimize refrigerant-based systems like AC units, heat pumps, and combined systems, using refrigerants like R744, R290, and R1234yf.
Validate your vehicle’s thermal performance in real-world conditions through virtual testing, ensuring reliability, regulatory compliance and reducing the need for extensive physical prototyping.
From the concept stage (system benchmarks, thermal management layout proposal elaboration, operating mode generation, visualization and optimization) over prototype manufacturing/testing to series support.
Our advanced CFD (Computational Fluid Dynamics) simulations analyze airflow and heat transfer to optimize critical vehicle systems such as HVAC, battery cooling, and cabin airflow.
Ensure that batteries operate within optimal temperature ranges, extending their life and maximizing range in electric and hybrid vehicles.
Simulate thermal behaviors at: Component, System and Vehicle level (heat up and defrosting , performance during driving cycles, stowage box power consumption of thermo-management components, etc)
We use GT-Suite for 1D simulation of subsystems and complete vehicle thermal management, paired with CFD for fluid dynamics analysis.
Simulations for a wide range of refrigerants, including R744, R290, and R1234yf, ensuring high-efficiency cooling and heating systems.
Our tools are scalable, allowing simulation of everything from single components to full vehicle systems.
Simulations are continuously validated against real-world data to ensure accuracy and reliability.
We account for complex interactions between thermal, fluid, and mechanical components to provide a comprehensive view of system performance.
Our thermal simulations help reduce energy consumption, boosting EV range and improving fuel efficiency in hybrid and internal combustion engine vehicles.
Simulate and optimize cabin airflow and HVAC systems for consistent, comfortable temperatures.
Reduce reliance on physical prototypes and accelerate your development process with precise virtual simulations.
Ensure your vehicle meets global emissions and efficiency standards by optimizing thermal systems for compliance.
With advanced battery cooling simulations, your battery packs will maintain optimal temperatures, avoiding overheating and prolonging vehicle range.
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