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Vegetation change as related to terrain factors at two glacier forefronts, Glacier National Park, Montana, U.S.A. 被引量:4
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作者 Callie B.LAMBERT Lynn M・RESLER +1 位作者 Yang SHAO david r.butler 《Journal of Mountain Science》 SCIE CSCD 2020年第1期1-15,共15页
Glacier recession is a globally occurring trend. Although a rich body of work has documented glacial response to climate warming, few studies have assessed vegetation cover change in recently deglaciated areas, especi... Glacier recession is a globally occurring trend. Although a rich body of work has documented glacial response to climate warming, few studies have assessed vegetation cover change in recently deglaciated areas, especially using geospatial technologies. Here, vegetation change at two glacier forefronts in Glacier National Park, Montana, U.S.A.was quantified through remote sensing analysis,fieldwork validation, and statistical modeling.Specifically, we assessed the spatial and temporal patterns of landcover change at the two glacier forefronts in Glacier National Park and determined the role of selected biophysical terrain factors(elevation, slope, aspect, solar radiation, flow accumulation, topographic wetness index, and surficial geology) on vegetation change(from nonvegetated to vegetated cover) at the deglaciated areas.Landsat imagery of the study locations in 1991, 2003,and 2015 were classified and validated using visual interpretation. Model results revealed geographic differences in biophysical correlates of vegetation change between the study areas, suggesting that terrain variation is a key factor affecting spatialtemporal patterns of vegetation change. At Jackson Glacier forefront, increases in vegetation over some portion or all of the study period were negatively associated with elevation, slope angle, and consolidated bedrock. At Grinnell Glacier forefront,increases in vegetation associated negatively with elevation and positively with solar radiation.Integrated geospatial and field approaches to the study of vegetation change in recently deglaciated terrain are recommended to understand and monitor processes and patterns of ongoing habitat change in rapidly changing mountain environments. 展开更多
关键词 Land cover change Physical geography Glacial forefronts Vegetation change Glacier National Park Terrain factors
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自然地理学中的混沌理论 被引量:1
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作者 George P.Malanson david r.butler +3 位作者 Stephen J.Walsh 王云才 朱登兴 宫新荷 《地理译报》 CSCD 1992年第4期5-9,共5页
混沌是表述无序中的有序的一个概念:简单确定性系统能产生不可预见的、看起来似乎是些盲目的结果。混沌的概念产生于对非线性动态系统的研究:这类系统代表了大多数自然地理学中的系统。现在系统论作为自然地理学中的理论已被人们广泛接... 混沌是表述无序中的有序的一个概念:简单确定性系统能产生不可预见的、看起来似乎是些盲目的结果。混沌的概念产生于对非线性动态系统的研究:这类系统代表了大多数自然地理学中的系统。现在系统论作为自然地理学中的理论已被人们广泛接受,但是“非线性”这一概念并非如此。在自然科学中,由于混沌理论愈来愈引起人们的注意。 展开更多
关键词 自然地理学 混沌理论
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