A Study on Car Cabin Thermal Radiation Measurement With Data Acquisition to Assessment of Solar Radiation on Cooling System Performance

Published online: 29/09/2025

Authors

Corressponding author's email:

vulq@hcmute.edu.vn

DOI:

https://doi.org/10.54644/jte.2025.1905

Keywords:

Solar radiation, Thermal monitoring, Numerical simulation, Temperature variation, Cooling system

Abstract

The study focused on car cabin solar radiation and thermal radiation monitoring and evaluate the impact of cooling system to heat distribution in car cabin. The simulation method implemented experimental data acquisition, designing and implementing a system to assess the relationship  between solar radiation and temperature variation in the car cabin. The result of study demostrated in car cabin that under solar radition heat distribution simulation in maximum heat cabin showed 43.3oC and non homogeneous heat distribution from 34.1oC to 43.3oC. The performcement of cooling system is quantified through absorbing heat experiment in 30 minutes. The result showed that the cooling system works by absorbing heat from cabin space and tranmission heat load to car cabin surrounding affect to cabin space temperator reduced 5ºC ~15oC. Though the analysis supports for an assessment of interior design orientation and cabin insulation material development and cooling system performance in a realistic.

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Author Biographies

Vinh Dat Ly, Ho Chi Minh City University of Technology and Education, Vietnam

Vinh Dat Ly (Vietnam). He hold associate Professor in 2017, and graduated PhD of Mechanical and Electrical Engineering in 2013, National Taipei University of Technology, Taipei, Taiwan. Research interests: Efficiency improvement in SI and CI engines, Intake and exhaust systems, Electro-magnetic valve train, improving of efficiency, fuel consumption and emission in internal combustion engines, etc. Work experiences: has taught as a lecturer at Faculty of Vehicle and Energy Engineering, University of Technology and Education Ho Chi Minh City, Vietnam, since 2003.

Email: datlv@hcmute.edu.vn. ORCID:  https://orcid.org/0000-0002-1490-8197

Quang Vu Le, Ho Chi Minh City University of Technology and Education, Vietnam

Quang Vu Le. 2007, Engineer Degree, major Vehicle Engineering in HCMC University of Technology and Education, Vietnam. 2014, Master Degree, major Vehicle Engineering in HCMC University of Technology and Education, Vietnam. From 2007 to present, Lecturer in Department of Automotive Electronic, Faculty of Vehicle and Energy Engineering, HCMC University of Technology and Education, Vietnam. Fields of Expertise and Research Interests : Automotive Electronic and Electrical systems; Application control systems on automotive.

Contact: +84 973777077. Email: vulq@hcmute.edu.vn. ORCID:  https://orcid.org/0009-0005-0293-4880

Van Tam Tran, Tam Hai Service Trading Investment Company Limited, Vietnam

Van Tam Tran. 2007, Engineer Degree, major Vehicle Engineering in HCMC University of Technology and Education, Vietnam. 2006, leader ROBOCON CKD02 Team. From 2008-2012, he was a dealer development staff at Honda Viet Nam. From 2012-2017, he was a business manager at Bosch Viet Nam. From 2017-2020, he was a sales manager at 3M Viet Nam. From 2020-2024, he was auto division director at Wurth Viet Nam.

Email: vantamlk123@gmail.com. ORCID:  https://orcid.org/0009-0005-0321-4404

References

N. T. Luong, “Nghiên cứu đánh giá hiệu quả che nắng của bạt cao su xốp trên ôtô,” in Proc. 5th Nat. Conf. Sci. Technol. Mech. Eng. (VCME), vol. 1, no. 1, pp. 1–8, 2018.

N. T. Luong, “Nghiên cứu đánh giá hiệu quả hệ thống làm mát ô tô đỗ ngoài trời sử dụng bạt gắn pin năng lượng mặt trời,” Science and Technology, vol. 1, no. 1, pp. 63–66, 2019.

H. H. Al-Kayiem, M. F. M. Sidik, and Y. R. A. L. Munusammy, “Study on the thermal accumulation and distribution inside a parked car cabin,” Am. J. Appl. Sci., vol. 1, no. 1, pp. 784–789, 2010. DOI: https://doi.org/10.3844/ajassp.2010.784.789

J. Horak, I. Schmerold, K. Wimmer, and G. Schauberger, “Cabin air temperature of parked vehicles in summer conditions: Life-threatening environment for children and pets calculated by a dynamic model,” Theor. Appl. Climatol., vol. 1, no. 1, pp. 107–118, 2017. DOI: https://doi.org/10.1007/s00704-016-1861-3

T. N. Phong, L. T. Dat, N. D. Khoa, and N. L. Phuong, “Mô phỏng số trong không gian cabin xe ô tô hướng tới sự tiện nghi nhiệt,” Tạp chí Khí tượng Thủy văn, vol. 1, no. 1, pp. 234–244, 2022. DOI: https://doi.org/10.36335/VNJHM.2022(EME4).234-244

TEKTRONIX Company, “TESTO 410-2 Manuservice,” [Online]. Available: https://www.tektronix.com.

N. T. Han, N. X. Khoa, and C. D. Hung, “Nghiên cứu thiết kế bộ tự động giảm nhiệt độ trong xe ô tô khi đỗ xe ngoài trời nắng,” Khoa học & Công nghệ, vol. 1, no. 1, pp. 98–101, 2018.

F. Brechtefeld, “Comparing least squares fit and least absolute deviations fit,” Wolfram Demonstrations Project, 2014. [Online]. Available: https://demonstrations.wolfram.com

R. Gaos and Y. Sirodz, “Pengembangan model pendingin kabin city car bertenaga surya menggunakan photovoltaics (PV) dan thermoelectric (TEC),” J. Teknologi, vol. 10, no. 1, pp. 34–40, 2019.

F. L. Macedo, A. Reverter, and A. Legarra, “Behavior of the linear regression method to estimate bias and accuracies with correct and incorrect genetic evaluation models,” J. Dairy Sci., vol. 103, no. 1, 2020. DOI: https://doi.org/10.3168/jds.2019-16603

L. K. Duong, Nhiệt kỹ thuật, Ho Chi Minh: Trường Đại học Sư phạm Kỹ thuật TP. Hồ Chí Minh, 2000.

3M Company, “3M Window Film Manual,” [Online]. Available: https://www.sirvisual.com/Attachment/100/818_49907_3M%20Window%20Film%20Manual.pdf

Published

29-09-2025

How to Cite

Lý Vĩnh Đạt, Lê Quang Vũ, & Trần Văn Tám. (2025). A Study on Car Cabin Thermal Radiation Measurement With Data Acquisition to Assessment of Solar Radiation on Cooling System Performance: Published online: 29/09/2025. Journal of Technical Education Science. https://doi.org/10.54644/jte.2025.1905

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