Published April 25, 2026 | Version v1

The Development of a Data-Driven Surrogate Model for Enhancing Electric Vehicle Cabin Airflow Analysis

  • 1. ROR icon Austrian Institute of Technology

Description

This paper presents a data-driven surrogate model for predicting cabin airflow and its integration into system-level electric vehicle simulations for energy management analysis. The model employs a graph-based neural network with a mirror-symmetric predictor–corrector architecture and is trained on a dataset generated using computational fluid dynamics (CFD) covering a defined range of inlet velocities and temperatures. The surrogate appropriately reconstructs temperature fields and captures the dominant airflow structures at significantly lower computational cost than CFD. Quantitative evaluation shows high accuracy in passenger-relevant regions, while localized discrepancies remain confined mainly to shear-layer zones. The model enables near-real-time inference and is coupled with a system-level modeling framework for control-oriented simulations that are impractical with CFD. The study is tailored to a specific geometry and operating range, showing that targeted training strategies and physics-based extensions improve robustness, particularly under limited data conditions.

Notes

The Shift2Zero project has received funding from the European Union Horizon Europe Programme: project num. 101192375. Views and opinions expressed are however those of the author(s) only and do not necessarily reflect those of the European Union or CINEA. Neither the European Union nor the granting authority can be held responsible for them.

Files

fluids-4241216_online.pdf

Files (4.4 MB)

Name Size Download all
md5:ba57f92230cf2d965b4b1b44722ff27f
4.4 MB Preview Download

Additional details

Funding

European Commission
Shift2Zero - Shifting to zero-emission logistics with right-sized, mission-focused, N1 eLCVs 101192375