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Smoke flow phenomena and turbulence characteristics of tunnel fires

机译:隧道火灾的烟流现象和湍流特性

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Gravity currents are similar in behavior with smoke flows. This work aims to provide evidence justifying the use of gravity current approach to model smoke flows downstream of the fire source. The turbulence solver available in almost all commercial CFD codes solves RANS for the flow field. To find out how well the nature of smoke flow be accurately modeled using RANS that is widely used for incompressible flows. The feasibility of using both Reynolds- and Favre-averaging schemes was numerically compared and examined in this paper. In this work, numerical simulations of a fire occurred in a 400-m longitudinally ventilated tunnel have been successfully performed using FDS version 4. Large eddy simulation is employed in this study. Although the ranges of fire size and ventilation velocity vary respectively from 0 MW to 100 MW and 0 m/s to 10 m/s, this paper focuses on the general flow and temperature fields and the turbulence characteristics. Furthermore, the turbulence kinetic energy levels of the flow in the tunnel at several locations were investigated. Since the flow field is generally induced by mechanical ventilation and combustion, the main contribution to the turbulence kinetic energy comes from its longitudinal, vertical, or their combination.
机译:重力流的行为与烟流相似。这项工作旨在提供证据证明使用重力流方法来模拟火源下游的烟流。几乎所有商业CFD代码中都可用的湍流求解器可解决RANS的流场问题。为了找出使用广泛用于不可压缩气流的RANS准确模拟烟雾流的性质的能力。本文对使用雷诺平均法和法弗平均法的可行性进行了数值比较和检验。在这项工作中,使用FDS版本4成功地进行了在400米纵向通风隧道中发生的火灾的数值模拟。尽管火势和通风速度的范围分别从0 MW到100 MW和0 m / s到10 m / s有所变化,但本文着重于一般的流场和温度场以及湍流特性。此外,还研究了隧道中几个位置的流动的湍流动能水平。由于流场通常是由机械通风和燃烧引起的,因此,对湍流动能的主要贡献来自其纵向,垂直或它们的组合。

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