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Possibility of using roof openings for natural ventilation in a shallow urban road tunnel

机译:在城市浅层隧道中使用屋顶开口进行自然通风的可能性

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Naturally ventilated urban vehicular tunnels with multiple roof openings have increased in China. Unnecessary gas (polluted air or fire smoke) are expected to be exhausted out through openings. Whether its safety standards can be satisfied or not still needs to be verified. In this paper, a safe CO concentration was firstly discussed, and a heat risk level of very high to extreme up to 46 degrees C was given. Secondly, a real 1410 m tunnel was proposed, and a 1/10 scale model tunnel was reproduced. Ambient winds of 0.95 m/s in prototype and 03 m/s in model were considered. Under normal traffic test, a track circuit was constructed with model vehicles moving on it to form traffic wind, and once the air velocity was larger than 031 m/s, the airflows were found to be not relevant to the Reynolds number. The traffic winds were weakened by openings. For three of all tested traffic, the actual air velocities were larger than the required ones, so its air qualities were satisfied. In firing test, two sets of burning experiments were conducted with which the heat release rates (HRR) were 8.35 kW and 13.7 kW. Large amounts of smoke were exhausted out of openings, and the high-temperature was not significant. Full-scale numerical simulations were carried out to verify the experimental results respectively using Fluent 6.0 for normal traffic and FDS 4.07 for firing. The simulations were compared well with the experiments. Further FDS simulations show that the openings' mass flow rates are influenced little by ambient temperature; with the increasing length of the buried section, much smoke accumulate inside leading to a high temperature; having 4-5 openings in one shaft group is oversize in the actual engineering design. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在中国,具有多个屋顶开口的自然通风的城市车辆隧道在增加。多余的气体(污染的空气或火气)有望通过开口排出。是否可以满足其安全标准仍需要验证。在本文中,首先讨论了安全的一氧化碳浓度,并给出了从高到极高至46摄氏度的热风险等级。其次,提出了一条实际的1410 m隧道,并复制了1/10比例模型隧道。原型的环境风为0.95 m / s,模型的环境风为03 m / s。在正常的交通测试下,使用模型车辆在其上行驶以形成交通风来构造轨道电路,并且一旦风速大于031 m / s,就发现气流与雷诺数无关。开口减弱了交通风。对于所有测试的流量中的三者,实际风速均大于要求的风速,因此其空气质量得到了满足。在燃烧测试中,进行了两组燃烧实验,其放热率(HRR)分别为8.35 kW和13.7 kW。大量烟气从开口中排出,高温不显着。进行了全面的数值模拟,以验证分别使用Fluent 6.0进行正常通行和使用FDS 4.07进行触发的实验结果。仿真与实验进行了很好的比较。进一步的FDS模拟表明,开口的质量流率几乎不受环境温度的影响。随着埋入部分长度的增加,大量的烟尘积聚在内部,导致高温。在实际的工程设计中,在一个轴组中具有4-5个开口的尺寸过大。 (C)2016 Elsevier Ltd.保留所有权利。

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