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首页> 外文期刊>Tunnelling and underground space technology >Simulating longitudinal ventilation flows in long tunnels: Comparison of full CFD and multi-scale modelling approaches in FDS6
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Simulating longitudinal ventilation flows in long tunnels: Comparison of full CFD and multi-scale modelling approaches in FDS6

机译:模拟长隧道中的纵向通风流:FDS6中完整CFD和多尺度建模方法的比较

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摘要

The accurate computational modelling of airflows in transport tunnels is needed for regulations compliance, pollution and fire safety studies but remains a challenge for long domains because the computational time increases dramatically. We simulate air flows using the open-source code FDS 6.1.1 developed by NIST, USA. This work contains two parts. First we validate FDS6's capability for predicting the flow conditions in the tunnel by comparing the predictions against on-site measurements in the Dartford Tunnel, London, UK, which is 1200 m long and 8.5 m in diameter. The comparison includes the average velocity and the profile downstream of an active jet fan up to 120 m. Secondly, we study the performance of the multi-scale modelling approach by splitting the tunnel into CFD domain and a one-dimensional domain using the FDS HVAC (Heating, Ventilation and Air Conditioning) feature. The work shows the average velocity predicted by FDS6 using both the full CFD and multi-scale approaches is within the experimental uncertainty of the measurements. Although the results showed the prediction of the downstream velocity profile near the jet fan falls outside the on-site measurements, the predictions at 80 m and beyond are accurate. Our results also show multi-scale modelling in FDS6 is as accurate as full CFD but up to 2.2 times faster and that computational savings increase with the length of the tunnel. This work sets the foundation for the next step in complexity with fire dynamics introduced to the tunnel. (C) 2015 Elsevier Ltd. All rights reserved.
机译:法规遵从,污染和消防安全研究需要准确计算运输隧道中气流的模型,但由于计算时间急剧增加,因此对于长范围领域仍然是一个挑战。我们使用美国NIST开发的开源代码FDS 6.1.1模拟气流。这项工作包含两个部分。首先,我们通过将预测值与英国伦敦达特福德隧道(长1200 m,直径8.5 m)中的现场测量结果进行比较,验证FDS6预测隧道中流动状况的能力。比较包括平均速度和有源射流风扇下游直至120 m的轮廓。其次,我们通过使用FDS HVAC(供暖,通风和空调)功能将隧道分为CFD域和一维域来研究多尺度建模方法的性能。这项工作表明FDS6使用完整CFD和多尺度方法预测的平均速度在测量的实验不确定性范围内。尽管结果表明射流风机附近的下游速度分布的预测值不在现场测量范围内,但在80 m及以上的预测值是准确的。我们的结果还表明,FDS6中的多尺度建模与完整CFD一样准确,但速度最高可提高2.2倍,并且计算节省随着隧道的长度而增加。这项工作为引入隧道的火灾动态为下一步的复杂性奠定了基础。 (C)2015 Elsevier Ltd.保留所有权利。

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