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Demonstrator for Aircraft heat exchanger LIfe prediction

Project description

Modelling aircraft heat exchangers

Heat exchangers are widely used in the aerospace industry, mainly for cooling hydraulics, auxiliary power units, gearboxes and other aircraft components. Metal heat exchangers are mostly reliable and durable but stress and extended use can negatively impact its components. An improved understanding of the heat exchanger ageing process is vital to improve its design and predict failure. The EU-funded project DALI is designing a powerful simulation tool for virtually testing heat exchangers. It will be able to model stress, thermal cycling, thermal fatigue (which causes cracks), eliminating the need for physical testing.

Objective

DALI aims at validating a virtual testing approach so that design and test loop can be shortened and tests can be partly replaced, applied on the development of future generation of compact heat exchangers, for the engine innovative bleed system; with higher requirements and thus damage probability. DALI proposes a fully integrated modelling platform where damage laws will be integrated relying on a multiphysics and multilevel modelling approach. A robust and reliable solution will be implemented based on an improved understanding of specific phenomena occurring during thermo mechanical ageing of heat exchanger in aircraft. The mainstream will enable to reproduce the thermal cycling ageing and its statistical probability by multiphysics simulations, and a set of master datasheets of fatigue curves and damage laws Manufacturing variability (local deformations, initial stress state), and other design variables will be included. The proposed validation scheme includes a set of details of increasing complexity where the simulation approach and the instrumented physical testing will be compared, and iteratively improved, so that real observations of cracking coming from Aircraft exploitation can be predicted. A representative coupon test plan and an innovative measurement to detect cracks initiation in non visible areas will be included. The prediction capacity will allow mastering the heat exchanger behaviour and the mean-time-between-failures, MTBF, to tailor the heat exchanger design, including sensitivity analysis for potential optimization. DALI stands on members’ skills and their cross advanced FEM knowledge capacities to enable a seamless technical coordination through the combination of customized experimental validation and advanced simulation so that a) an accelerated test approach can be implemented for in service life assurance, b) a degradation law that could be used in combination with a simplified and accurate simulations for future CHX precooler sizing.

Coordinator

EPSILON INGENIERIE
Net EU contribution
€ 364 962,50
Address
RUE TARFAYA BATIMENT B612
31400 Toulouse
France

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Region
Occitanie Midi-Pyrénées Haute-Garonne
Activity type
Private for-profit entities (excluding Higher or Secondary Education Establishments)
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Total cost
€ 533 875,00

Participants (2)