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2023 | OriginalPaper | Chapter

Application of “Digital Twin” Technology in Vehicle Aerodynamic Drag Optimization

Author : Mingyang Song

Published in: Proceedings of China SAE Congress 2021: Selected Papers

Publisher: Springer Nature Singapore

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Abstract

Through the establishment of a “digital twin” model, the aerodynamic drag of a vehicle is studied, built CFD twin model, simulation optimization and the DOE method was conducted, wind tunnel experiments are carried out to study the drag reduction contribution changes of the aerodynamic kit, the trend is to reduce the drag coefficient of the vehicle and verify the reliability of the results of the “digital twin” model.

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Literature
1.
go back to reference Shao, R.: Riding the wind and waves of the Automobile industry into the “new Four Modernizations”. Automobile Technol. (08), 7 (2019) Shao, R.: Riding the wind and waves of the Automobile industry into the “new Four Modernizations”. Automobile Technol. (08), 7 (2019)
2.
go back to reference Englar, R.J.: Development of pneumatic aerodynamic devices to improve the performance, economy and safety of heavy vehicles. SAE (1), 2208 (2000) Englar, R.J.: Development of pneumatic aerodynamic devices to improve the performance, economy and safety of heavy vehicles. SAE (1), 2208 (2000)
3.
go back to reference Zheng, Z-Z., Liu, X.Y., Guan, Z., Wang, A.: J. Meas. Technol. 23(03), 236–239 (2009) Zheng, Z-Z., Liu, X.Y., Guan, Z., Wang, A.: J. Meas. Technol. 23(03), 236–239 (2009)
4.
go back to reference Bhatti, G., Mohan, H., Raja Singh, R.: Towards the future of smart electric vehicles: digital twin technology. Renew. Sustain. Energ. Rev. 141, 110801 (2021)CrossRef Bhatti, G., Mohan, H., Raja Singh, R.: Towards the future of smart electric vehicles: digital twin technology. Renew. Sustain. Energ. Rev. 141, 110801 (2021)CrossRef
5.
go back to reference Bian, X.: Development and prospect of modeling and simulation technology. Mark. Wkly (05), 173–174 (2020) Bian, X.: Development and prospect of modeling and simulation technology. Mark. Wkly (05), 173–174 (2020)
6.
go back to reference Lin, Q.-L., et al.: Wind tunnel experiment and numerical calculation of outflow field of AN SUV. In: 2017 Annual Conference of Automotive Aerodynamics Branch, pp. 34–39 (2017) Lin, Q.-L., et al.: Wind tunnel experiment and numerical calculation of outflow field of AN SUV. In: 2017 Annual Conference of Automotive Aerodynamics Branch, pp. 34–39 (2017)
7.
go back to reference Zhang, L., Lu, H.: Digital twinning from modeling simulation. J. Syst. Simul. 1–11 (2021) Zhang, L., Lu, H.: Digital twinning from modeling simulation. J. Syst. Simul. 1–11 (2021)
8.
go back to reference Xiong, X.-S., Zang, M.-Y., Fan, Q.-Y.: Numerical simulation and error analysis of low drag vehicle outflow field. Automotive Eng. 34(01), 36–39+45 (2012) Xiong, X.-S., Zang, M.-Y., Fan, Q.-Y.: Numerical simulation and error analysis of low drag vehicle outflow field. Automotive Eng. 34(01), 36–39+45 (2012)
9.
go back to reference Ma, J.Y., Fu, Q., Pan, Z.F., Fan, S.: Simulation analysis and experimental research on aerodynamic characteristics of an SUV. Ordnance Autom. 34(07), 33–36 (2015) Ma, J.Y., Fu, Q., Pan, Z.F., Fan, S.: Simulation analysis and experimental research on aerodynamic characteristics of an SUV. Ordnance Autom. 34(07), 33–36 (2015)
10.
go back to reference Zhang, Y.-C., et al.: Research on the influence of ground effect simulation system in automobile wind tunnel. Automotive Eng. 38(12), 1434–1439 (2016) Zhang, Y.-C., et al.: Research on the influence of ground effect simulation system in automobile wind tunnel. Automotive Eng. 38(12), 1434–1439 (2016)
11.
go back to reference Zhang, Y.-C.: Research on Automobile Wind Tunnel Modification Based on Simulation and Test. Jilin University (2010) Zhang, Y.-C.: Research on Automobile Wind Tunnel Modification Based on Simulation and Test. Jilin University (2010)
12.
go back to reference Zhao, Z.-Z., Zhao, X.-M., Xu, L., Li, X.-L.: Automobile Pract. Technol. (03), 83–84+112 (2016) Zhao, Z.-Z., Zhao, X.-M., Xu, L., Li, X.-L.: Automobile Pract. Technol. (03), 83–84+112 (2016)
13.
go back to reference Tang, Z., Tian, S.: Research on vehicle aerodynamic optimization and drag reduction based on DOE. Hydraulics Pneumatics (03), 106–112 (2019) Tang, Z., Tian, S.: Research on vehicle aerodynamic optimization and drag reduction based on DOE. Hydraulics Pneumatics (03), 106–112 (2019)
Metadata
Title
Application of “Digital Twin” Technology in Vehicle Aerodynamic Drag Optimization
Author
Mingyang Song
Copyright Year
2023
Publisher
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-19-3842-9_3

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