首页> 外文期刊>Tunnelling and underground space technology >Pressure-induced dipole theory and pressure pulsation in shallow urban road tunnels with top vents
【24h】

Pressure-induced dipole theory and pressure pulsation in shallow urban road tunnels with top vents

机译:顶部通风口浅埋城市公路隧道中的压力诱导偶极子理论和压力脉动

获取原文
获取原文并翻译 | 示例
           

摘要

Shallow urban road tunnels with top vents represent environmentally friendly and energy-saving technology. To date, four such tunnels are operational in Nanjing, and their intra-tunnel air quality has been widely acclaimed. However, no prescriptive design methods have been developed for this technology. Natural ventilation at the top of the tunnels is caused by the pressure difference inside and outside the top vents. Thus, a prerequisite to the development of scientific design methods for such tunnels is a complete understanding and representation of the pressure wave distribution pattern in the tunnels. Based on an analogy with an electric dipole, we propose a pressure-induced dipole theory and construct an intra-tunnel pressure distribution model. An experimental platform is developed to evaluate the pressure distribution inside tunnels under 6 operational conditions. The results suggest the following. (1) The proposed pressure-induced dipole theory can well describe and explain the pressure wave distribution rules in road tunnels. (2) With a uniform and continuous traffic flow, the real-time pressure on each point in the tunnels demonstrates periodical asymmetrical quasi-sinusoidal pulsation, where the cycle is given as T = (S + L)/v. (3) Periodical pressure pulsation with decaying amplitude exists around the top vents. With large top vents, the pressure exchange between the inside and outside of the tunnels is significant.
机译:具有顶部通风口的浅层城市道路隧道代表了环保节能技术。迄今为止,南京已有4条这样的隧道在运营,其隧道内空气质量得到了广泛赞誉。但是,尚未针对该技术开发说明性设计方法。隧道顶部的自然通风是由顶部通风口内部和外部的压力差引起的。因此,开发这种隧道科学设计方法的先决条件是对隧道中压力波分布模式的完整理解和表示。基于与电偶极子的类比,我们提出了压力感应偶极子理论,并构建了隧道内压力分布模型。开发了一个实验平台来评估在6种运行条件下隧道内部的压力分布。结果提示如下。 (1)提出的压力感应偶极子理论可以很好地描述和解​​释公路隧道中的压力波分布规律。 (2)在交通流量均匀连续的情况下,隧道各点的实时压力表现为周期性的非对称准正弦脉动,其周期为T =(S + L)/ v。 (3)顶部排气孔周围存在周期性的压力脉动,振幅逐渐衰减。对于大型的顶部通风口,隧道内部和外部之间的压力交换非常重要。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号