A design optimization study of an air-cooling battery thermal management system for electric vehicles
Author:
Affiliation:
1. School of Engineering, University of Tasmania, Hobart, TAS, Australia
2. School of Mechanical and Automotive Engineering, Shanghai University of Engineering Science, Songjiang, Shanghai, China
Abstract
Funder
Australian Research Council
Publisher
SAGE Publications
Subject
Industrial and Manufacturing Engineering,Mechanical Engineering
Link
http://journals.sagepub.com/doi/pdf/10.1177/09544089221116418
Reference32 articles.
1. Performance Improvement of a Novel Trapezoid Air-Cooling Battery Thermal Management System for Electric Vehicles
2. Empirical Evaluation of the Environmental Emergency Management Capability of Local Governments in China
3. Influence of temperature and volume fraction on the thermophysical properties of CuO-R134a nano refrigerant and its application in battery thermal management system
4. Connecting battery technologies for electric vehicles from battery materials to management
5. Consideration of manufacturing induced adhesive damage in automotive simulations
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