EFFECTS OF FIRE ON LANDSCAPE HETEROGENEITY IN YELLOWSTONE-NATIONAL-PARK, WYOMING

被引:385
作者
TURNER, MG
HARGROVE, WW
GARDNER, RH
ROMME, WH
机构
[1] Environmental Sciences Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee, 37831‐6038
[2] Biology Department, Fort Lewis College, Durango, Colorado
关键词
GIS; LANDSCAPE ECOLOGY; LANDSAT THEMATIC MAPPER; REMOTE SENSING; SCALE; SPATIAL HETEROGENEITY;
D O I
10.2307/3235886
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
A map of burn severity resulting from the 1988 fires that occurred in Yellowstone National Park (YNP) was derived from Landsat Thematic Mapper (TM) imagery and used to assess the isolation of burned areas, the heterogeneity that resulted from fires burning under moderate and severe burning conditions, and the relationship between heterogeneity and fire size. The majority of severely burned areas were within close proximity (50 to 200 m) to unburned or lightly burned areas, suggesting that few burned sites are very far from potential sources of propagules for plant reestablishment. Fires that occurred under moderate burning conditions early during the 1988 fire season resulted in a lower proportion of crown fire than fires that occurred under severe burning conditions later in the season. Increased dominance and contagion of burn severity classes and a decrease in the edge: area ratio for later fires indicated a slightly more aggregated burn pattern compared to early fires. The proportion of burned area in different burn severity classes varied as a function of daily fire size. When daily area burned was relatively low, the proportion of burned area in each burn severity class varied widely. When daily burned area exceeded 1250 ha, the burned area contained about 50% crown fire, 30% severe surface burn, and 20% light surface burn. Understanding the effect of fire on landscape heterogeneity is important because the kinds, amounts, and spatial distribution of burned and unburned areas may influence the reestablishment of plant species on burned sites.
引用
收藏
页码:731 / 742
页数:12
相关论文
共 49 条
[11]  
Despain D., Rodman A., Schullery P., Shovic H., (1989)
[12]  
Fowells H.A., Silviics of forest trees of the United States, (1965)
[13]  
Gardner R.H., Milne B.T., Turner M.G., O'Neill R.V., Neutral models for the analysis of broad‐scale land scape pattern, Landscape Ecol., 1, pp. 19-28, (1987)
[14]  
Graham R.L., Turner M.G., Dale V.H., How increasing atmospheric CO<sub>2</sub> and climate change affect forests, BioScience, 40, pp. 575-587, (1990)
[15]  
Habeck J.R., Mutch R.W., Fire‐dependent forests in the northern Rockies, Quat. Res., 3, pp. 408-424, (1973)
[16]  
Heinselman M.L., Fire in the virgin forests of the Boundary Waters Canoe Area, Minnesota, Quat. Res., 3, pp. 329-382, (1973)
[17]  
Hemstrom M.A., Franklin J.F., Fire and other disturbances of the forests in Mount Rainier National Park, Quat. Res., 18, pp. 32-51, (1982)
[18]  
Horn B.K.P., Hill shading and the reflectance map, Proc. Inst. Electric. Electron. Eng., 69, pp. 14-47, (1981)
[19]  
Houston D.B., Wildfires in northern Yellowstone National Park, Ecology, 54, pp. 1111-1117, (1973)
[20]  
Knight D.H., Parasites, lightning, and the vegetation mosaic in wilderness landscapes, Landscape heterogeneity and disturbance,, pp. 59-83, (1987)