Department of Electronic Engineering, Universidad Técnica Federico Santa María, Valparaiso 2390123, Chile.
Department of Industrial Engineering, Universidad Técnica Federico Santa María, Valparaiso 2390123, Chile.
Sensors (Basel). 2019 Dec 12;19(24):5475. doi: 10.3390/s19245475.
Fuel moisture content (FMC) proved to be one of the most relevant parameters for controlling fire behavior and risk, particularly at the wildland-urban interface (WUI). Data relating FMC to spectral indexes for different species are an important requirement identified by the wildfire safety community. In Valparaíso, the WUI is mainly composed of and -commonly found in Mediterranean WUI areas-which represent the 97.51% of the forests plantation inventory. In this work we study the spectral signature of these species under different levels of FMC. In particular, we analyze the behavior of the spectral reflectance per each species at five dehydration stages, obtaining eighteen spectral indexes related to water content and, for , the area of each leave-associated with the water content-is also computed. As the main outcome of this research, we provide a validated linear regression model associated with each spectral index and the fuel moisture content and moisture loss, per each species studied.
燃料水分含量 (FMC) 被证明是控制火灾行为和风险的最相关参数之一,特别是在城乡结合部 (WUI)。与不同物种的光谱指数相关的 FMC 数据是野火安全界确定的一个重要要求。在瓦尔帕莱索,WUI 主要由 和 组成——在 Mediterranean WUI 地区很常见——它们代表了 97.51%的森林种植园清单。在这项工作中,我们研究了这些物种在不同 FMC 水平下的光谱特征。特别是,我们分析了每种物种在五个脱水阶段的光谱反射率行为,获得了 18 个与水分含量相关的光谱指数,并且还计算了与水分含量相关的每个叶子的面积。作为这项研究的主要结果,我们为每个研究物种提供了一个与每个光谱指数以及燃料水分含量和水分损失相关的验证线性回归模型。