PASSIVE ENHANCEMENT OF HEAT DISSIPATION OF DESKTOP COMPUTER CHASSIS

被引:1
|
作者
Wang, S. Kong [1 ]
Hu, Juin Haw [1 ]
Kuo, Chun-Hsien [2 ]
机构
[1] I Shou Univ, Dept Mech & Automat Engn, Kaohsiung 84001, Taiwan
[2] Natl Kaohsiung Univ Appl Sci, Dept Mold & Engn, Kaohsiung 80701, Taiwan
关键词
passive heat dissipation; PC chassis heat dissipation; heating element; fan configurations; openings on PC cover; vortices; DESIGN;
D O I
暂无
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The purpose of this study is to find optimal configurations for chassis heat dissipation in a passive fashion, i.e., to reach an optimal configuration by determining the location and orientation of an additional fan (if any), aided by flow-inducing openings on the chassis cover, without making further hardware changes on the current design. The results were compared with the temperature measurements of each element, and the agreement was favorable. The parameters under consideration are the locations and orientations of the additional fan, and flow conditions of the openings on the chassis cover, i.e., with or without an opening, and the direction of the flow (blowing in or sucking out). Temperature distributions and flow fields around various heating elements were evaluated numerically. It is concluded that an overall optimal chassis configuration in which all the heating elements have a favorable heat dissipation behavior may not exist. However, an optimal configuration in terms of heat dissipation does exist if only one specific element is under consideration. Also, the occurrence of vortices which results in poor heat dissipation was identified, and the method for the elimination of these vortices was suggested.
引用
收藏
页码:139 / 149
页数:11
相关论文
共 50 条
  • [21] Interface makes a computer desktop look like a real desktop
    不详
    COMPUTER, 2007, 40 (12) : 21 - 21
  • [22] DESKTOP COMPUTER FLOW ROUTING
    KEEFER, TN
    JOURNAL OF THE HYDRAULICS DIVISION-ASCE, 1974, 100 (NHY7): : 1047 - 1058
  • [23] Enhancement of Heat Dissipation from the Hydraulic System Using a Finned Adaptive Heat Exchanger
    Lipnicky, Marek
    Brodnianska, Zuzana
    APPLIED SCIENCES-BASEL, 2023, 13 (09):
  • [24] MECHANICAL DRAFTING ON A DESKTOP COMPUTER
    COOLEY, P
    COMPUTER-AIDED DESIGN, 1979, 11 (02) : 79 - 84
  • [25] EXPERIMENTAL STUDY ON COLLABORATIVE ENHANCEMENT OF LED HEAT DISSIPATION CHARACTERISTICS BY PULSATING HEAT PIPE AND HEAT PIPE
    Shang, Fumin
    Ju, HaiJiao
    Liu, Chaoyue
    Yan, Tianhai
    Cao, Xin
    Liu, Dong
    Liu, Jianhong
    THERMAL SCIENCE, 2024, 28 (3B): : 2491 - 2500
  • [26] ENHANCEMENT OF CONDENSATION HEAT-TRANSFER IN PRESENCE OF NONCONDENSABLE BY VISCOUS DISSIPATION
    SADDY, M
    DELPOZO, FV
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 1974, 17 (08) : 933 - 943
  • [27] Thermal Enhancement Using Nanofluids on High Heat Dissipation Electronic Components
    Riehl, Roger R.
    JOURNAL OF NANOFLUIDS, 2019, 8 (01) : 30 - 40
  • [28] Numerical Investigation of Enhancement Heat Dissipation Characteristics of the Radiator With Vortex Generators
    Li, Hai-Zhu
    Min, Chun-Hua
    Wang, Kun
    Xie, Li-Yao
    Kung Cheng Je Wu Li Hsueh Pao/Journal of Engineering Thermophysics, 2022, 43 (01): : 158 - 163
  • [29] Multifunctional Superhydrophobic Composite Coatings with Remarkable Passive Heat Dissipation and Anticorrosion Properties
    Zhang, Siyi
    Li, Yong
    Yang, Hui
    Meng, Qing
    Wang, Wei
    Li, Hui
    Huang, ChuanJun
    Nishimura, Arata
    Li, Jiangtao
    Li, Laifeng
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2021, 60 (30) : 11019 - 11029
  • [30] Passive Dissipation of Canopy Urban Heat Through Double Skin Façades
    Huang, Chih-Hong
    Wang, Ching-Hsun
    Tsaur, Yu-Ping
    BUILDINGS, 2025, 15 (03)