根据 MODIS 记录,内华达山脉季节性积雪区地表反照率对火灾干扰的响应

IF 7.3 1区 地球科学 Q1 ENVIRONMENTAL SCIENCES Earths Future Pub Date : 2024-06-26 DOI:10.1029/2023EF004172
J. M. Gayler, S. M. Skiles
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引用次数: 0

摘要

雪区的野火可以通过清除林冠、揭示下层积雪而使冬季和春季的景观更加明亮。从覆盖积雪的植被系统过渡到露出积雪的景观所引起的地表反照率(LSA)变化会对地表能量平衡产生影响,从而对气候和供水产生影响。森林火灾的频率、规模和海拔都在增加,但人们对季节性积雪区(SSZ)火灾导致的地表能量平衡变化却知之甚少。本研究针对内华达山脉的这一知识空白进行了研究,该山脉近期的气候变化导致干旱、积雪提前和快速减少,以及野火影响加剧。利用中分辨率成像光谱仪的遥感雪分和LSA数据评估野火对内华达山脉SSZ地貌的影响,方法是将烧伤区的LSA与未烧伤对照区和历史平均LSA进行比较,然后量化与LSA变化相关的地表辐射强迫(RF)。在燃烧严重程度较高和中等的火灾中,冬季LSA因积雪覆盖、土地特征和燃烧严重程度而异,从积雪较少的火灾疤痕的0.12到积雪覆盖的火灾疤痕的0.47不等。这项研究加深了人们对地貌如何应对野火及其对地表能量平衡的影响的了解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Response of Land Surface Albedo to Fire Disturbance in the Sierra Nevada Seasonal Snow Zone Over the MODIS Record

Wildfires in the snow zone can brighten winter and spring landscapes by removing forest canopy, revealing underlying snow cover. Land surface albedo (LSA) alterations associated with transitioning from a canopied, snow-hiding vegetation regime to a snow-revealing landscape have impacts on the surface energy balance, with implications for climate and water supply. Forest fires are increasing in frequency, size, and elevation, but the change in LSA due to fire in the seasonal snow zone (SSZ) is poorly understood. This study addresses this knowledge gap for the Sierra Nevada, where recent climatic changes have contributed to droughts, earlier and more rapidly declining snowpacks, and worsening wildfire impacts. Remotely sensed snow fraction and LSA data from Moderate Resolution Imaging Spectrometer were used to assess the impact of wildfire on landscapes in the Sierra Nevada SSZ by comparing LSA in burn scars to unburned control areas and the historical average LSA, then quantifying the surface radiative forcing (RF) associated with change in LSA. Among high and moderate burn severity fires, winter LSA varied depending on snow cover, land characteristics, and burn severity, ranging from 0.12 in low-snow fire scars to 0.47 in snow-covered fire scars. This study adds to understanding of how landscapes respond to wildfires and the subsequent impacts on the surface energy balance.

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来源期刊
Earths Future
Earths Future ENVIRONMENTAL SCIENCESGEOSCIENCES, MULTIDI-GEOSCIENCES, MULTIDISCIPLINARY
CiteScore
11.00
自引率
7.30%
发文量
260
审稿时长
16 weeks
期刊介绍: Earth’s Future: A transdisciplinary open access journal, Earth’s Future focuses on the state of the Earth and the prediction of the planet’s future. By publishing peer-reviewed articles as well as editorials, essays, reviews, and commentaries, this journal will be the preeminent scholarly resource on the Anthropocene. It will also help assess the risks and opportunities associated with environmental changes and challenges.
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