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Experimental determination of tunnel ventilation axial ducted fan performance

机译:隧道通风轴向管道性能的实验测定

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摘要

To investigate traffic tunnel ventilation flows, a scaled model of a traffic tunnel with longitudinal ventilation system based on ducted fans is used. Flows in tunnels are influenced by tunnel geometry, fan characteristics, ventilation operation scenario, vehicle traffic, atmospheric factors, etc. To analyze flow fields of tunnels in detail, knowledge of tunnel jet-fan properties and turbulent flow characteristics at the fan exit are required, and can be used as input data for CFD boundary conditions of tunnel flow computation. For this purpose experimental measurements were done using the hot wire anemometry technique. The obtained results, trough ensemble-averaged and time averaged profiles of all velocity components, turbulence intensity, turbulent kinetic energy, integral flow length scales, available Reynolds stresses, Turbulent kinetic energy production rates and the fan thrust performance, are presented. These data allow us to analyze in more detail the influence of fan flow on energy and pollutant removal efficiencies of the tunnel ventilation and to evaluate accuracy of CFD studies on fan improvements.
机译:为了调查交通隧道通风流动,使用基于管道风扇的纵向通风系统的交通隧道的缩放模型。隧道中的流动受隧道几何,风扇特性,通风操作场景,车辆交通,大气因子等的影响。详细分析隧道的流动场,需要了解风扇出口处的隧道喷射风扇特性和湍流特性,并且可以用作隧道流量计算的CFD边界条件的输入数据。为此目的,使用热线风化技术进行实验测量。所得到的结果,展示了所有速度分量,湍流强度,湍流动能,整体流动长度,可用的雷诺应力,湍流动能生产率和风扇推力性能的展开的结果。这些数据允许我们更详细地分析风扇流量对隧道通风的能量和污染物去除效率的影响,并评估CFD研究对风扇改进的准确性。

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