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应用等效纬度-海拔模型进行地温及多年冻土制图
作者姓名:KenjiYoshikawa  PrasadGogineni
作者单位:Water and Environmental Research Center, University of Alaska Fairbanks, USA,The University of Kansas, Radar Systems and Remote Sensing Laboratory, USA
摘    要:This research presents a method for permafrost mapping in discontinuous permafrost regions based on equivalent latitude/elevation concept in interior Alaska. In winter months, study site has a strong temperature inversion in air up to 700 m elevation. Air temperature data and the effects of slope, aspect and elevation were used to create an equivalent latitude/elevation model. This model was well correlated with mean annual surface temperature (0.79). In this watershed, the thawing index (It≈1 400 ℃*days) at the ground surface and snow depth do not vary greatly from south facing to north facing slopes. The primary controlled factor that determines the mean annual surface temperature was the winter surface temperature. The permafrost stability is effectively controlled by the freezing index. We determined 37.5% of Caribou-Poker Creeks Research Watershed has unstable or thawing permafrost. At least 2.1% of the permafrost in this watershed may have disappeared in the last 90 years due to climate warming. This method makes it possible to evaluate the permafrost stability in the present, past and future.

关 键 词:ground  temperature  permafrost  mapping  latitude  elevation

Ground Temperature and Permafrost Mapping Using an Equivalent Latitude/Elevation Model
KenjiYoshikawa PrasadGogineni.Ground Temperature and Permafrost Mapping Using an Equivalent Latitude/Elevation Model[J].Journal of Glaciology and Geocryology,2002,24(5):526-531.
Authors:Kenji Yoshikawa  Larry DHinzman  Prasad Gogineni
Institution:1. Water and Environmental Research Center, University of Alaska Fairbanks, USA;2. The University of Kansas, Radar Systems and Remote Sensing Laboratory, USA
Abstract:This research presents a method for permafrost mapping in discontinuous permafrost regions based on equivalent latitude/elevation concept in interior Alaska. In winter months, study site has a strong temperature inversion in air up to 700 m elevation. Air temperature data and the effects of slope, aspect and elevation were used to create an equivalent latitude/elevation model. This model was well correlated with mean annual surface temperature (0.79). In this watershed, the thawing index (It≈1 400 ℃*days) at the ground surface and snow depth do not vary greatly from south facing to north facing slopes. The primary controlled factor that determines the mean annual surface temperature was the winter surface temperature. The permafrost stability is effectively controlled by the freezing index. We determined 37.5% of Caribou-Poker Creeks Research Watershed has unstable or thawing permafrost. At least 2.1% of the permafrost in this watershed may have disappeared in the last 90 years due to climate warming. This method makes it possible to evaluate the permafrost stability in the present, past and future.
Keywords:ground temperature  permafrost mapping  latitude  elevation
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