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Experimental investigation of a ventilation system based on wall confluent jets

机译:基于墙汇流射流的通风系统的实验研究

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摘要

The flow behavior of isothermal and non-isothermal wall confluent jets (WCJ) ventilation system was investigated experimentally in a mock-up office environment. Two flow regions were identified: first, a primary region is developed below the supply device, with axis along the inlet wall, and a secondary wall-jet forms along the floor. The velocity and temperature fields were recorded by traversing a hot wire and thermistor anemometers for both primary and secondary regions. The results show self-similarity characteristic of the velocity and temperature profiles for both isothermal and non-isothermal WCJ. Maximum velocity decay and its spreading rate are linear and independent of the inlet airflow rate. Minimum temperature difference and its spread also show linear decay. The spreading rates for maximum velocity are similar in both the primary and secondary regions normal to the inlet wall and floor, respectively, which is consistent with previous studies on wall jets. The variation of draught rating is evaluated via mean velocity, turbulence intensity and temperature. Although the WCJ has slow velocity decay, which enables it to cover almost the entire floor of the test room, the draught is acceptable in the occupied zone according to ISO 7730. PMV (predicted mean vote) and PPD (predicted percentage dissatisfied) are presented for the occupied zone of the room.
机译:在模拟办公室环境中,对等温和非等温壁汇流式射流(WCJ)通风系统的流动特性进行了实验研究。确定了两个流动区域:首先,在供给装置下方形成一个主区域,其轴线沿进口壁,而一个次壁射流沿地板形成。通过遍历主要和次要区域的热线和热敏电阻风速计记录速度和温度场。结果表明,等温和非等温WCJ的速度和温度曲线具有自相似性。最大速度衰减及其扩展速率是线性的,并且与进气流量无关。最小温差及其散布也显示线性衰减。在垂直于进气壁和地面的主要​​和次要区域中,最大速度的散布速率相似,这与先前对壁射流的研究一致。通过平均速度,湍流强度和温度评估吃水额定值的变化。尽管WCJ的速度衰减较慢,从而使其几乎可以覆盖测试室的整个楼层,但根据ISO 7730,在占用区域中的吃水是可以接受的。显示了PMV(预测的平均投票)和PPD(预测的不满意百分比)房间的占用区域。

著录项

  • 来源
    《Building and Environment》 |2014年第10期|18-31|共14页
  • 作者

    S. Janbakhsh; B. Moshfegh;

  • 作者单位

    Department of Management and Engineering, Linkoeping University, 581 83 Linkoeping, Sweden,Department of Building, Energy and Environmental Engineering, University of Gaevle, Kungsbaecksvaegen 47, 801 76 Gaevle, Sweden;

    Department of Management and Engineering, Linkoeping University, 581 83 Linkoeping, Sweden,Department of Building, Energy and Environmental Engineering, University of Gaevle, Kungsbaecksvaegen 47, 801 76 Gaevle, Sweden;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ventilation system; Supply device; Wall confluent jets; Measurement; Draught rate; Thermal comfort indices;

    机译:通风系统;供给装置;墙汇流射流;测量;草稿费率;热舒适指数;

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