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Numerical Study on Different Series Modes of Jet Fan in a Longitudinal Tunnel Ventilation System

机译:纵向隧道通风系统中喷射风扇不同系列模式的数值研究

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摘要

Efficient ventilation systems will contribute to maintaining air quality in the tunnel. In order to improve ventilation performance in normal traffic condition, the 3D tunnel models were established according to the original design for the tunnel located in central plains of China. Based on the commercial CFD software Fluent 6.3 and k-ε turbulence model, numerical simulations were carried out to study the patterns of jet flow and the optimization of fan combinations. It is found that the axial velocity profile obtained from numerical simulation agrees quite well with turbulent free jet theory although there is a little difference on the magnitude. The comparison of four combination modes under the condition of operating four fans indicates that the ventilation effectiveness is affected mainly by both the interval of adjacent groups of fans and the combination modes of operational fans. According to the simulation results, a novel combination mode which consists of a group double paralleled fans and two groups single fan is designed. The novel combination mode is regarded as the optimum combination mode with respect to maximizing air velocity in the tunnel. Compared to the traditional combination modes, it will increase the air velocity by 5.7%.
机译:高效的通风系统将有助于保持隧道中的空气质量。为了提高正常交通状况的通风性能,根据位于中国中原的隧道的原始设计建立了3D隧道模型。基于商业CFD软件流畅的6.3和K-ε湍流模型,进行了数值模拟,以研究喷射流动模式和风扇组合的优化。发现从数值模拟获得的轴向速度曲线与湍流自由喷射理论相当吻合得很好,尽管幅度有点差异。在操作四个风扇的条件下进行四种组合模式的比较表明通风效果主要受到球迷组的间隔和操作风扇的组合模式的影响。根据仿真结果,设计了一种包括组双平行风扇和两组单个风扇组成的新型组合模式。新颖的组合模式被认为是最佳组合模式,相对于最大化隧道中的空气速度。与传统的组合模式相比,它将增加空气速度为5.7%。

著录项

  • 作者

    Guihong Pei; Jie Pan;

  • 作者单位
  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 eng
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