预测火灾蔓延的火线位移模型

Fire Pub Date : 2024-04-06 DOI:10.3390/fire7040121
Domingos X. Viegas, C. Ribeiro, Thiago Fernandes Barbosa, Tiago Rodrigues, Luís M. Ribeiro
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摘要

目前大多数地表火灾模拟器都依赖于罗瑟梅尔模型,该模型考虑了燃料、地形和气象的局部特性来估算蔓延速度,并利用椭圆形增长的概念来预测火灾周界在整个时间段内的演变情况。然而,该模型并未考虑火线附近对流过程的影响,而对流过程会改变火势沿火线蔓延的条件。本文提出了一种创新的火灾预测模拟器,它基于火线元素位移的概念,由平移、旋转和延伸组成,而不是逐点位移。根据穿越火线和沿火线的对流热通量规律以及实验室实验,提出了估算火线位移过程中的角旋转速度和延伸的模型。这些模型适用于在 30° 和 40° 斜坡上进行的一系列点燃火灾的实验室实验,由于头部、背部和侧面火灾的蔓延速度已知,因此可以预测火灾周边的演变情况。只要已知模型所需的参数,火灾蔓延模型还可应用于边界条件不同的其他情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Fireline Displacement Model to Predict Fire Spread
Most current surface fire simulators rely upon Rothermel’s model, which considers the local properties of fuel, topography, and meteorology to estimate the rate of spread, and utilises the concept of elliptical growth to predict the evolution of the fire perimeter throughout time. However, the effects of convective processes near the fireline, which modify fire spread conditions along the fire perimeter, are not considered in this model. An innovative fire prediction simulator based on the concept of fireline element displacement, which is composed of translation, rotation, and extension, rather than a point-by-point displacement, is proposed in this article. Based on the laws of convective heat fluxes across and along the fireline and on laboratory experiments, models to estimate the angular rotation velocity and the extension of the fireline during its displacement are proposed. These models are applied to a set of laboratory experiments of point ignition fires on slopes of 30° and 40° and, given the fact that the rate of spread of the head, back, and flank fire are known, the evolution of the fire perimeter can be predicted. The fire spread model can be applied to other situations of varying boundary conditions provided that the parameters required by the model are known.
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