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Investigation of the regularities of temperature regime of fire in cable tunnels depending on its parameters

机译:根据其参数研究电缆隧道中火灾温度规律的规律

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Simulation, as a method of scientific research, makes it possible, without performing costly and labor-intensive field experiments on models, to carry out all necessary experiments to determine the temperature modes of fire in cable tunnels. The purpose of the research of this work was to determine the temperature regime of fire in a cable tunnel depending on its shape, size and fire load. Mathematical models of cable tunnels were created in one of the CFD software systems. Cable products are constantly evolving and improving. For tests on the fire resistance of building structures of cable tunnels, a standard temperature mode of fire is used which may not correspond to fire mode in a real cable tunnel. The computational experiments were carried out and the temperature regimes of fires in tunnels with different parameters were determined. The obtained results showed the parameters of cable tunnels, which influence the temperature regime of fire in tunnels most. In this paper the use of computational experiments for the study of heat and mass transfer processes in fires in cable tunnels was examined further. CFD Fire Dynamics Simulator 6.2 was used.
机译:作为科学研究的一种方法,模拟可以在不对模型进行昂贵且费力的现场实验的情况下,进行所有必要的实验来确定电缆隧道中火灾的温度模式。这项工作的研究目的是根据电缆隧道的形状,大小和火灾负荷来确定其着火温度。在其中一种CFD软件系统中创建了电缆隧道的数学模型。电缆产品在不断发展和完善。为了测试电缆隧道的建筑结构的耐火性,使用的标准温度模式可能与实际电缆隧道中的火灾模式不符。进行了计算实验,确定了不同参数隧道的火灾温度范围。结果表明,电缆隧道的参数对隧道的着火温度影响最大。在本文中,将进一步研究计算实验在研究电缆隧道火灾中的传热和传质过程中的应用。使用了CFD Fire Dynamics Simulator 6.2。

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