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The Hot-Dry-Windy Index: A New Fire Weather Index

机译:干热风指数:新的火灾天气指数

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Fire weather indices are commonly used by fire weather forecasters to predict when weather conditions will make a wildland fire difficult to manage. Complex interactions at multiple scales between fire, fuels, topography, and weather make these predictions extremely difficult. We define a new fire weather index called the Hot-Dry-Windy Index (HDW). HDW uses the basic science of how the atmosphere can affect a fire to define the meteorological variables that can be predicted at synoptic-and meso-alpha-scales that govern the potential for the atmosphere to affect a fire. The new index is formulated to account for meteorological conditions both at the Earth’s surface and in a 500-m layer just above the surface. HDW is defined and then compared with the Haines Index (HI) for four historical fires. The Climate Forecast System Reanalysis (CFSR) is used to provide the meteorological data for calculating the indices. Our results indicate that HDW can identify days on which synoptic-and meso-alpha-scale weather processes can contribute to especially dangerous fire behavior. HDW is shown to perform better than the HI for each of the four historical fires. Additionally, since HDW is based on the meteorological variables that govern the potential for the atmosphere to affect a fire, it is possible to speculate on why HDW would be more or less effective based on the conditions that prevail in a given fire case. The HI, in contrast, does not have a physical basis, which makes speculation on why it works or does not work difficult because the mechanisms are not clear.
机译:火灾天气预报员通常使用火灾天气指数来预测天气条件何时会使野火难以管理。火,燃料,地形和天气之间在多个尺度上的复杂相互作用使得这些预测极为困难。我们定义了一个新的火灾天气指数,称为热干风指数(HDW)。 HDW使用有关大气如何影响火势的基础科学来定义气象变量,这些气象变量可以在控制大气潜在影响火势的天气尺度和中尺度α尺度上进行预测。制定新指标的目的是考虑到地球表面以及表面上方500米层的气象条件。定义了HDW,然后将其与Haines指数(HI)进行了四次历史性火灾比较。气候预报系统再分析(CFSR)用于提供用于计算指标的气象数据。我们的结果表明,HDW可以确定天气和中-alpha尺度天气过程可能导致特别危险的火灾行为的日子。在四次历史大火中,HDW的表现均优于HI。此外,由于HDW基于控制大气影响火势的气象变量,因此可以根据给定火灾情况下的状况推测HDW为什么会或多或少有效。相比之下,HI并没有物理基础,这使得人们推测其工作原理或不工作的难度很大,因为机制尚不清楚。

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