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A NEW ADVANCE IN TUNNEL VENTILATION DESIGN PLANNING

机译:隧道通风设计规划的新进展

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The new train signaling, traction power and tunnel ventilation system coordination guidelines enacted in National Fire Protection Association (NFPA) Standard 130 have brought the necessity and cost of tunnel ventilation fan shafts into greater focus. The guidelines were aimed at coordinating the three aforementioned rail systems to control the number of trains that could be between successive ventilation shafts during an emergency - in recognition of the fact that the best protection to both incident and non-incident train passengers and crew is to allow no more than one train in each ventilation zone. Though based in safety, these new NFPA guidelines can substantially expand the capital cost and environmental impact of new rail tunnel projects by adding more ventilation shafts and tunnel fan equipment to the scope of work. In addition, the resulting increase in the required number of ventilation shafts and tunnel fan equipment can hinder existing railroad properties as they seek to either increase their train throughput rates, or reduce their tunnel electrical infrastructure. Fortunately, a new kind of emergency ventilation shaft has been developed to facilitate compliance with the NFPA 130 Standard without the excessive capital cost and far-reaching environmental impacts of a traditional emergency ventilation shaft. This new kind of emergency ventilation shaft is called the Crossflue. The Crossflue is a horizontal passage between parallel rail tunnels with a single ventilation fan-motor unit installation. The Crossflue fan is designed to transfer air/smoke flows from one (occupied, incident) tunnel to another (unoccupied, non-incident) tunnel - thereby protecting the incident tunnel at the expense of the non-incident tunnel. The Crossflue passage has angled construction to allow a smooth transition of airflows both into and out of the adjoining tunnels. In addition to the fan, the Crossflue contains a ventilation damper, sound attenuators, ductwork transitions and flexible connectors within the fan equipment line-up; the functionality of all this mechanical equipment is described in the paper. To preserve underground space and minimize the rock excavation, the Crossflue fan is both remotely-powered and remotely-controlled; the fan is only operated as part of a pre-programmed response to tunnel fire events. The methodology utilized to design the Crossflue was taken from the Subway Environmental Design Handbook (SEDH); the SEDH [1] was specifically developed for rail tunnel ventilation design and is the preeminent reference volume in the industry. In summary, the Crossflue provides a dual benefit of achieving NFPA 130 compliance, while at the same time minimizing the construction, equipment, environmental, and energy costs of a traditional tunnel ventilation shaft.
机译:美国国家消防协会(NFPA)标准130制定的新的火车信号,牵引力和隧道通风系统协调准则使隧道通风风扇轴的必要性和成本成为人们关注的重点。该准则旨在协调上述三个铁路系统,以控制紧急情况下连续通风竖井之间的列车数量-认识到对事故和非事故列车乘客和机组人员的最佳保护是每个通风区域最多只能乘坐一列火车。尽管基于安全性,但这些新的NFPA准则可以通过在工作范围内增加更多的通风井和隧道风机设备,来大大扩展新铁路隧道项目的投资成本和环境影响。另外,所需通风轴和隧道风机设备数量的增加会阻碍现有的铁路性能,因为它们试图提高火车的通过率或减少隧道的电气基础设施。幸运的是,已经开发出一种新型的紧急通风井筒,以促进其符合NFPA 130标准的要求,而不会像传统的紧急通风井筒那样花费过多的资金成本和深远的环境影响。这种新型的紧急通风井称为Crossflue。 Crossflue是平行轨道隧道之间的水平通道,带有单个通风风扇-马达单元安装。 Crossflue风扇设计用于将空气/烟流从一个(占用的,入射的)隧道传输到另一个(未占用的,非事件的)隧道-从而以牺牲非事件隧道的代价保护了入射隧道。 Crossflue通道具有成角度的结构,可以使气流平稳过渡到相邻的隧道中和从相邻的隧道中出来。除风扇外,Crossflue还包含通风设备,消音器,风管过渡装置和风扇设备系列中的柔性连接器。本文将介绍所有这些机械设备的功能。为了保护地下空间并最大程度地减少岩石开挖,Crossflue风扇具有远程供电和远程控制功能。风扇仅作为对隧道火灾事件的预编程响应的一部分进行操作。用于设计Crossflue的方法学取自《地铁环境设计手册》(SEDH); SEDH [1]是专门为铁路隧道通风设计而开发的,并且是行业中的佼佼者。总之,Crossflue具有达到NFPA 130标准的双重好处,同时又使传统隧道通风井的结构,设备,环境和能源成本降至最低。

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