• 其他栏目

    董昊

    • 教授 博士生导师
    • 招生学科专业:
      力学 -- 【招收博士、硕士研究生】 -- 航空学院
      机械工程 -- 【招收博士、硕士研究生】 -- 航空学院
      航空宇航科学与技术 -- 【招收博士、硕士研究生】 -- 航空学院
      机械 -- 【招收博士、硕士研究生】 -- 航空学院
    • 性别:男
    • 毕业院校:南京航空航天大学
    • 学历:南京航空航天大学
    • 学位:工学博士学位
    • 所在单位:航空学院
    • 办公地点:A18-514/C12-313
    • 联系方式:donghao@nuaa.edu.cn 025-84895983,13770854635
    • 电子邮箱:

    访问量:

    开通时间:..

    最后更新时间:..

    Numerical Investigation into the Air Flow Distributions of the Air Conditioning System in the Modular Data Center

    点击次数:

    所属单位:民航学院

    发表刊物:ADVANCES IN APPLIED MATHEMATICS AND MECHANICS

    关键字:Modular data center air conditioning temperature distribution hot/cold aisle CFD

    摘要:Data center plays an increasingly important role in everyday life. As data center is becoming more and more powerful, energy consumption is also increasing dramatically. The air conditioning system occupies at least 50 percent of the total energy consumption. Therefore, delicate analysis on the air conditioning system could help to reduce energy consumption in data center. An advanced Finite Volume Method with RNG k - epsilon model and convective heat exchange model is used in this paper to study the airflow and the temperature distribution of modular data center under different arrangements. Specifically, the calculation formula of convective heat transfer coefficient for plate flow is adopted to simplify analysis; and fans on the back of racks are simplified to be walls with a certain pressure jump. Simulations reveal that, in the case where air conditioners are arranged face-to-face, the temperature distribution on the back of racks is not uniform, and local high temperature points emerge near the side wall of air conditioners. By analyzing the distribution of air flow and temperature, geometric model is optimized by using a diagonal rack arrangement and drilling holes on the side wall. In the same energy consumption situation, the overall maximum temperature of the optimized model is reduced by 2.3 degrees C compared with that of the original one, and the maximum temperature on the server surface is reduced by 1 degrees C. Based on the optimized model, the effect of the hot aisle distance on the temperature distribution is studied. By simulating four different cases with various distances of hot aisle of 100cm, 120cm, 130cm and 150cm, it is found that the temperature is generally lower and distributed more evenly in the case with 120cm hot aisle distance. This demonstrates that the distance of hot aisle has an effect on temperature.

    ISSN号:2070-0733

    是否译文:

    发表时间:2019-02-01

    合写作者:Qin, Ziqiang,Liu, Shicheng,Li, Yao,李遥,沈英英,Wang, Haibo,Zong, Yitong,Wu, Xiaojun,司海青

    通讯作者:司海青,董昊