Journal of Electronics Cooling and Thermal Control

Volume 6, Issue 2 (June 2016)

ISSN Print: 2162-6162   ISSN Online: 2162-6170

Google-based Impact Factor: 0.25  Citations  

Radiator Heat Dissipation Performance

HTML  XML Download Download as PDF (Size: 1378KB)  PP. 88-96  
DOI: 10.4236/jectc.2016.62008    6,529 Downloads   12,211 Views  Citations

ABSTRACT

This paper presents a set of parametric studies of heat dissipation performed on automotive radiators. The work’s first step consists of designing five radiators with different fin pitch wave distance (P = 2.5, 2.4, 2.3, 2.2, 2.1 mm). Then, we proceed to the fabrication of our five samples. The purpose of this work is to determine through our experiment’s results which one have the best cooling performance. This numerical tool has been previously verified and validated using a wide experimental data bank. The analysis focuses on the cooling performance for automobile radiator by changing several dimensions of the radiator fin phase as well as the importance of coolant flow lay-out on the radiator global performance. This experience has been performed at Hubei Radiatech Auto Cooling System Co., Ltd. For the cooling performance experience, we use JB2293-1978 Wind Tunnel Test Method for Automobile and Tractor Radiators. The test bench system is a continuous air suction type wind tunnel; collection and control of operating condition parameters can be done automatically by the computer via the preset program, and also can be done by the user manually. The results show that the more we increase the fin phase, the better the cooling performance will be and we also save material so the product cost will be cheaper.

Share and Cite:

Ismael, T. , Yun, S. and Ulugbek, F. (2016) Radiator Heat Dissipation Performance. Journal of Electronics Cooling and Thermal Control, 6, 88-96. doi: 10.4236/jectc.2016.62008.

Cited by

[1] Materials Coatings and Enhanced Characterisation for Alkaline Water-Splitting Devices
2021
[2] Dairesel ve düz tüplü taşıt radyatörlerinin farklı soğutma sıvıları için teorik ve deneysel performans analizi
2020
[3] Influence of the Coolant Flow Containing Silver Nanoparticles (Ag) from an Aqueous Solution Based on Ethylene Glycol (EG50%) on the Thermal-Hydraulic …
2020
[4] Optimalisasi sistem pendingin berbasis termoelektrik berpendingin air
2019
[5] OPTIMIZATION OF PROCESS PARAMETERS OF AN ENGINE RADIATOR USING TAGUCHI METHOD
2018
[6] Heat Transfer Enhancement Of Radiators Using Various Approaches
2018
[7] The Impact of Tube Optimization Design on Radiator Heat Rejection Performance
2017
[8] Radiator Vibration Fatigue Analysis
2017
[9] Development of an Integrated Cooling System Controller for Hybrid Electric Vehicles
Journal of Electrical and Computer Engineering , 2017
[10] Study and Design of Engine Cooling System with Distilled Water as a Coolant for FSAE Car
International Research Journal of Engineering and Technology, 2017

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.