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Combined estimation of fire perimeters and fuel adjustment factors in FARSITE for forecasting wildland fire propagation

机译:野外火灾传播预测火灾周长和燃料调整因子的综合估算

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摘要

As bias and uncertainties inevitably exist on both wildland fire model states and parameters, fire simulations do not always accurately forecast the temporal and spatial progression of wildfires. In this paper, a novel approach is proposed to estimate fire perimeters and fuel adjustment factors simultaneously for FARSITE tool. Fire perim-eters estimation is the key to reduce model state bias, while fuel adjustment factors estimation is an essential component to reduce model parameter uncertainties. For those purposes, ensemble transform Kalman filter al-gorithm with adaptive proposal is adopted for correcting the fire perimeters, Monte Carlo based radial basis function neural network (RBFNN) is used to estimate fuel adjustment factors. The proposed method is first evaluated on homogeneous fuels distributed over flat ground for an experimental grassfire, then an intensive validation study is done on heterogeneous fuels distributed over complex terrain for a fire accident corre-sponding to the 2018 California Camp Fire. Results show that combined estimation of fire perimeters and fuel adjustment factors provides an interesting framework to produce accurate forecast of the fire propagation.
机译:由于栅栏和不确定性不可避免地存在于荒地的消防模型状态和参数上,因此消防模拟并不总是准确地预测野火的时间和空间进展。本文提出了一种新的方法,以估算Farsite工具的火灾周长和燃料调整因子。 Fire Perim-Eters估计是降低模型状态偏差的关键,而燃料调整因子估计是降低模型参数不确定性的重要组成部分。对于那些目的,采用具有自适应提议的集合变换卡尔曼滤波器Al-Gorithm用于校正火灾周长,蒙特卡罗基于基于径向基函数神经网络(RBFNN)用于估计燃料调整因子。所提出的方法首先在分布于实验性草地的平面上的均匀燃料上进行评估,然后在分布在复杂地形的异质燃料上进行了一个密集的验证研究,以便在2018年加州营地火灾中进行消防地形。结果表明,消防周长和燃料调整因子的综合估计提供了一个有趣的框架,以产生准确的火力传播预测。

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