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Explore IndustryDesign the right aircraft: Thermal management strategies using simulation
Design the right aircraft: Thermal management strategies using simulation
Learn how Airbus Helicopters leveraged Simcenter Amesim to accurately predict and verify the thermal-hydraulic system performance from early-stage system sizing to fully integrated design.
Guest Speaker: Airbus Helicopters
Benoit Genot: Hydraulic and Flight Control Engineer
Jean-Baptiste Lopez-Velasco: Thermal Management Expert
Recent improvements in integrated aircraft simulation models have enabled an analysis of integrated system performance, including the thermal balance at an aircraft level. This advancement on aircraft thermal management enables engineering teams to make critical decisions on aircraft architectures earlier in the design process.
These advancements are needed to address emerging trends in aircraft design including aircraft systems electrification, electric-hybrid propulsion and the use of advanced composites. The ability to derive insight in the thermal balance needs across an entire aircraft mission requires detailed understanding of complex system interactions. In the context of ECS system design, successful aircraft integrators will need to leverage novel heat rejection strategies to ensure system safety and passenger comfort.
With the aid of early-stage aircraft thermal management simulation engineers can evaluate strategies to maintain heat-balance of an aircraft program including:
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Learn how Airbus Helicopters leveraged Simcenter Amesim to accurately predict and verify the thermal-hydraulic system performance from early-stage system sizing to fully integrated design.
Guest Speaker: Airbus Helicopters
Benoit Genot: Hydraulic and Flight Control Engineer
Jean-Baptiste Lopez-Velasco: Thermal Management Expert
Recent improvements in integrated aircraft simulation models have enabled an analysis of integrated system performance, including the thermal balance at an aircraft level. This advancement on aircraft thermal management enables engineering teams to make critical decisions on aircraft architectures earlier in the design process.
These advancements are needed to address emerging trends in aircraft design including aircraft systems electrification, electric-hybrid propulsion and the use of advanced composites. The ability to derive insight in the thermal balance needs across an entire aircraft mission requires detailed understanding of complex system interactions. In the context of ECS system design, successful aircraft integrators will need to leverage novel heat rejection strategies to ensure system safety and passenger comfort.
With the aid of early-stage aircraft thermal management simulation engineers can evaluate strategies to maintain heat-balance of an aircraft program including: