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首页> 外文期刊>International Journal of Wildland Fire >Evaluating the Mid-Infrared Bi-spectral Index for improved assessment of low-severity fire effects in a conifer forest
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Evaluating the Mid-Infrared Bi-spectral Index for improved assessment of low-severity fire effects in a conifer forest

机译:评估中红外二光谱指标,以改善对针叶树林中低严重性火灾作用的评估

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摘要

Remote sensing products provide a vital understanding of wildfire effects across a landscape, but detection and delineation of low-and mixed-severity fire remain difficult. Although data provided by the Monitoring Trends in Burn Severity (MTBS) project are frequently used to assess severity in the United States, alternative indices can offer improvement in the measurement of low-severity fire effects and would be beneficial for future product development and adoption. This research note evaluated one such alternative, the Mid-Infrared Bi-Spectral Index (MIRBI), which was developed in savannah ecosystems to isolate spectral changes caused by burning and reduce noise from other factors. MIRBI, differenced MIRBI (dMIRBI) and burn severity indices used by MTBS were assessed for spectral optimality at distinguishing severity and the ability to differentiate between unburned and burned canopy in a conifer forest. The MIRBI indices were better at isolating changes caused by burning and demonstrated higher spectral separability, particularly at low severity. These findings suggest that MIRBI indices can provide an enhanced alternative or complement to current MTBS products in high-canopy-cover forests for applications such as discernment of fire perimeters and unburned islands, as well as identification of low-severity fire effects.
机译:遥感产品对景观中的野火效果提供了重要了解,但检测和划定低,混合严重性的火灾仍然困难。虽然烧伤严重程度的监测趋势(MTB)项目的监测趋势提供的数据经常用于评估美国的严重程度,但替代指数可以提供改善低严重性的火灾效应,并将有利于未来产品开发和采用。本研究说明评估了一种这样的替代方案,中红外双光谱指数(MIRBI),该替代品在大草原生态系统中开发,以隔离由燃烧和降低其他因素的噪音引起的光谱变化。 MIRBI,差异的MIRBI(DMIRBI)和MTB使用的烧伤严重程度指数被评估,以识别严重程度,以及区分在针叶树林中未燃烧和烧伤的冠层之间的能力。 MiRBI指数在燃烧引起的变化下较好,并表现出更高的光谱分离,特别是在低严重程度下。这些调查结果表明,MiRBI指数可以为当前MTBS产品提供增强的替代或补充,用于诸如防火周长和未燃烧的岛屿的识别等应用,以及识别低严重性的火灾效应。

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