Automotive cabin soak temperature control strategies for improved safety, comfort and fuel efficiency: A review

There has been growing concern over improving the driving range of electric vehicles (EVs) and achieving rapid cabin thermal comfort upon entering a hot-soaked vehicle, thereby reducing occupant stress and discomfort. This comprehensive review focuses on the interior cabin soak temperature of commer...

Full description

Bibliographic Details
Main Authors: A. A., Lahimer, A. A., Razak, A. F., Sharol, K., Sopian
Format: Article
Language:English
English
Published: Elsevier Ltd 2023
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/38068/7/Automotive%20cabin%20soak%20temperature%20control%20strategies%20for%20improved%20safety.pdf
http://umpir.ump.edu.my/id/eprint/38068/13/Automotive%20cabin%20soak%20temperature%20control%20strategies%20for%20improved%20safety%2C%20comfort%20and%20fuel%20efficiency.pdf
_version_ 1825815045038145536
author A. A., Lahimer
A. A., Razak
A. F., Sharol
K., Sopian
author_facet A. A., Lahimer
A. A., Razak
A. F., Sharol
K., Sopian
author_sort A. A., Lahimer
collection UMP
description There has been growing concern over improving the driving range of electric vehicles (EVs) and achieving rapid cabin thermal comfort upon entering a hot-soaked vehicle, thereby reducing occupant stress and discomfort. This comprehensive review focuses on the interior cabin soak temperature of commercial vehicles impacts when parked under direct sunlight and; evaluates the potential, characterization, drawbacks, and recent developments of the temperature reduction approaches in improving safety, comfort and fuel efficiency. Various cabin temperature reduction methods in the literature have been collected, analyzed, and evaluated. It has been found that cabin temperature threatens children and pets, leading to discomfort upon entry and reaching deadly levels. The most feasible passive technologies include implementing phase- change-materials (PCMs), solar chimneys, aluminium covers, solar-powered ventilation, and reflective glass. The colour of the car's bodywork should also be considered, as it has a significant impact on reducing the cabin air temperature. The choice of technology depends on factors such as energy source type, economic feasibility, end-user behaviour, and government regulations.
first_indexed 2024-03-06T13:07:35Z
format Article
id UMPir38068
institution Universiti Malaysia Pahang
language English
English
last_indexed 2024-03-06T13:07:35Z
publishDate 2023
publisher Elsevier Ltd
record_format dspace
spelling UMPir380682023-07-20T00:41:44Z http://umpir.ump.edu.my/id/eprint/38068/ Automotive cabin soak temperature control strategies for improved safety, comfort and fuel efficiency: A review A. A., Lahimer A. A., Razak A. F., Sharol K., Sopian TJ Mechanical engineering and machinery There has been growing concern over improving the driving range of electric vehicles (EVs) and achieving rapid cabin thermal comfort upon entering a hot-soaked vehicle, thereby reducing occupant stress and discomfort. This comprehensive review focuses on the interior cabin soak temperature of commercial vehicles impacts when parked under direct sunlight and; evaluates the potential, characterization, drawbacks, and recent developments of the temperature reduction approaches in improving safety, comfort and fuel efficiency. Various cabin temperature reduction methods in the literature have been collected, analyzed, and evaluated. It has been found that cabin temperature threatens children and pets, leading to discomfort upon entry and reaching deadly levels. The most feasible passive technologies include implementing phase- change-materials (PCMs), solar chimneys, aluminium covers, solar-powered ventilation, and reflective glass. The colour of the car's bodywork should also be considered, as it has a significant impact on reducing the cabin air temperature. The choice of technology depends on factors such as energy source type, economic feasibility, end-user behaviour, and government regulations. Elsevier Ltd 2023-07-15 Article PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/38068/7/Automotive%20cabin%20soak%20temperature%20control%20strategies%20for%20improved%20safety.pdf pdf en http://umpir.ump.edu.my/id/eprint/38068/13/Automotive%20cabin%20soak%20temperature%20control%20strategies%20for%20improved%20safety%2C%20comfort%20and%20fuel%20efficiency.pdf A. A., Lahimer and A. A., Razak and A. F., Sharol and K., Sopian (2023) Automotive cabin soak temperature control strategies for improved safety, comfort and fuel efficiency: A review. Solar Energy, 259. 416 -436. ISSN 0038-092X. (Published) https://doi.org/10.1016/j.solener.2023.05.039 https://doi.org/10.1016/j.solener.2023.05.039
spellingShingle TJ Mechanical engineering and machinery
A. A., Lahimer
A. A., Razak
A. F., Sharol
K., Sopian
Automotive cabin soak temperature control strategies for improved safety, comfort and fuel efficiency: A review
title Automotive cabin soak temperature control strategies for improved safety, comfort and fuel efficiency: A review
title_full Automotive cabin soak temperature control strategies for improved safety, comfort and fuel efficiency: A review
title_fullStr Automotive cabin soak temperature control strategies for improved safety, comfort and fuel efficiency: A review
title_full_unstemmed Automotive cabin soak temperature control strategies for improved safety, comfort and fuel efficiency: A review
title_short Automotive cabin soak temperature control strategies for improved safety, comfort and fuel efficiency: A review
title_sort automotive cabin soak temperature control strategies for improved safety comfort and fuel efficiency a review
topic TJ Mechanical engineering and machinery
url http://umpir.ump.edu.my/id/eprint/38068/7/Automotive%20cabin%20soak%20temperature%20control%20strategies%20for%20improved%20safety.pdf
http://umpir.ump.edu.my/id/eprint/38068/13/Automotive%20cabin%20soak%20temperature%20control%20strategies%20for%20improved%20safety%2C%20comfort%20and%20fuel%20efficiency.pdf
work_keys_str_mv AT aalahimer automotivecabinsoaktemperaturecontrolstrategiesforimprovedsafetycomfortandfuelefficiencyareview
AT aarazak automotivecabinsoaktemperaturecontrolstrategiesforimprovedsafetycomfortandfuelefficiencyareview
AT afsharol automotivecabinsoaktemperaturecontrolstrategiesforimprovedsafetycomfortandfuelefficiencyareview
AT ksopian automotivecabinsoaktemperaturecontrolstrategiesforimprovedsafetycomfortandfuelefficiencyareview