Environmental parameters distribution and energy saving analysis with personalized ventilation system

被引:0
|
作者
Sun, Yuming [1 ]
Lin Duanmu [1 ]
Li, Xingli [1 ]
Shu, Haiwei [1 ]
Wang, Zongshan [1 ]
机构
[1] Dalian Univ Technol, Sch Civil & Hydraul Engn, Dalian, Peoples R China
来源
FIRST INTERNATIONAL CONFERENCE ON BUILDING ENERGY AND ENVIRONMENT, PROCEEDINGS VOLS 1-3 | 2008年
关键词
personalized ventilation system; environment parameters; energy saving;
D O I
暂无
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The distribution of environment parameters both at working and ambient area was studied with personalized ventilation (PV) using objective measurement. We performed this experiment in an environment controlled chamber. Subjects were exposed to local airflow towards the face at three air supply volume (25, 15, 10L/s), at ambient temperature of 28 degrees C with PV air temperature of 18, 20, 23 degrees C and at arnbient temperature of 20 degrees C with PV temperature of 26, 30 degrees C. Air temperature and velocity at the workplace were collected at five heights (0.11, 0.50, 0.68, 1.01, 1.21m) corresponding to the altitude of ankle, lap, abdomen, neck and head. The results revealed that air velocity distribution at the workplace closely lay on PV but the temperature distribution was obviously influenced not only by PV but also by mixing ventilation. High velocity airflow was gained in front of face and chest region. Face and chest air velocity values increased clearly when PV supplied more air, however air velocity behind of human body changed little as PV air supply increasing. It was found that transient duration both of air velocity and temperature at the workstation would last more than 10min after turning on PV. The potential of energy saving was also estimated by comparing with traditional mixing ventilation system for a typical office building in Dalian, China.
引用
收藏
页码:39 / 45
页数:7
相关论文
共 50 条
  • [1] Energy-saving strategies with personalized ventilation in cold climates
    Schiavon, Stefano
    Melikov, Arsen K.
    ENERGY AND BUILDINGS, 2009, 41 (05) : 543 - 550
  • [2] Energy analysis of the personalized ventilation system in hot and humid climates
    Schiavon, Stefano
    Melikov, Arsen K.
    Sekhar, Chandra
    ENERGY AND BUILDINGS, 2010, 42 (05) : 699 - 707
  • [3] Design Environmental protection, Energy Saving and Safety Ventilation System of Long Highway Immersed Tunnel
    Yang, XiuJun
    PROCEEDINGS OF 2ND INTERNATIONAL SYMPOSIUM ON SUBMERGED FLOATING TUNNELS AND UNDERWATER TUNNEL STRUCTURES (SUFTUS-2016), 2016, 166 : 32 - 36
  • [4] Energy saving in building ventilation
    D'Este, A
    Gastaldello, A
    Schibuola, L
    Ecosystems and Sustainable Development V, 2005, 81 : 335 - 344
  • [5] Energy-saving mine ventilation
    B. P. Kazakov
    A. V. Shalimov
    A. S. Kiryakov
    Journal of Mining Science, 2013, 49 : 475 - 481
  • [6] Energy-saving mine ventilation
    Kazakov, B. P.
    Shalimov, A. V.
    Kiryakov, A. S.
    JOURNAL OF MINING SCIENCE, 2013, 49 (03) : 475 - 481
  • [7] Thermal comfort and energy saving of a personalized PFCU air-conditioning system
    Pan, CS
    Chiang, HC
    Yen, MC
    Wang, CC
    ENERGY AND BUILDINGS, 2005, 37 (05) : 443 - 449
  • [8] Analysis of the solar wall heat transfer and energy saving of residential ventilation
    Wang, Yueren
    Qi, Wei
    Wu, Nan
    PROGRESS IN RENEWABLE AND SUSTAINABLE ENERGY, PTS 1 AND 2, 2013, 608-609 : 1673 - 1676
  • [9] Analysis of energy saving using natural ventilation in a traditional Italian building
    Cardinale, N
    Micucci, M
    Ruggiero, F
    ENERGY AND BUILDINGS, 2003, 35 (02) : 153 - 159
  • [10] Energy Saving Analysis of Harmonic Suppression in a Distribution Network
    Deng, Kelin
    Cao, Junwei
    Guo, Peng
    Xu, Xingtao
    2013 FOURTH INTERNATIONAL CONFERENCE ON NETWORKING AND DISTRIBUTED COMPUTING (ICNDC), 2013, : 121 - 125