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首页> 外文期刊>Tunnelling and underground space technology >Novel correlation to evaluate the pressure losses for different traffic jam conditions in road tunnel with alternative jet fan, second part
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Novel correlation to evaluate the pressure losses for different traffic jam conditions in road tunnel with alternative jet fan, second part

机译:新颖的相关性,用备用喷射风扇评估公路隧道中不同交通拥堵状况下的压力损失,第二部分

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摘要

The aim of this study is to provide a novel correlation to evaluate the pressure loss, in road tunnel, for different traffic jam conditions (Filling Tunnel Traffic, FIT). The proposed correlation refers to a longitudinal ventilation system of innovative impulsive jet fan with silencers inclined toward tunnel floor. This innovative design solution reduces the Coanda effect and, consequently, the pressure loss, requiring thereby less electrical power with respect to the traditional one. The jam vehicles, equally spaced, are considered as asperities whereby, the correlation provides a kind of "friction factor" due to vehicles as function of FTT. The pressure loss caused by vehicles depends on the roughness and aerodynamic coefficient of vehicles surface and depends also on vortices between the vehicles. This "friction factor" can be used to compute the pressure loss due to vehicles and added to the wall friction, providing the "total friction factor". The novel correlation, here proposed, is useful to the designer to size the innovative ventilation system because there are no data in literature or in technical reports about the interaction between the air flux ejected from the inclined jet fan and cars. This work is the extension of an antecedent one (Cascetta et al., 2019) in which the novel correlation has referred to a longitudinal ventilation system equipped with traditional impulsive jet fan.
机译:这项研究的目的是提供一种新颖的相关性,以评估公路隧道中不同交通拥堵情况(填方隧道交通,FIT)的压力损失。所提出的相关性涉及具有消音器朝向隧道底板倾斜的创新型脉冲喷气式风扇的纵向通风系统。这种创新的设计解决方案减少了柯恩达效应,从而减少了压力损失,因此与传统的解决方案相比,所需的电能更少。等距间隔的卡纸车被视为凹凸不平的物体,因此,相关性提供了一种“摩擦因数”,这是由于车辆是FTT的功能。由车辆引起的压力损失取决于车辆表面的粗糙度和空气动力系数,并且还取决于车辆之间的涡流。该“摩擦因数”可用于计算由于车辆引起的压力损失,并添加到壁摩擦中,从而提供“总摩擦因数”。这里提出的这种新颖的相关性对设计人员确定创新的通风系统很有用,因为在文献或技术报告中都没有关于从斜射式风扇吹出的气流与汽车之间相互作用的数据。这项工作是对前一个技术的扩展(Cascetta等,2019),其中新颖的关联是指配备有传统脉冲射流风扇的纵向通风系统。

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