Spatial Variations of Holocene Climatic Change in the Yellowstone Region
- 1 March 1993
- journal article
- Published by Cambridge University Press (CUP) in Quaternary Research
- Vol. 39 (2) , 231-238
- https://doi.org/10.1006/qres.1993.1026
Abstract
The paleoecologic record of the northern Rocky Mountains shows considerable spatial variability, which has been difficult to explain as a unified response to large-scale changes in effective moisture or temperature through time. Comparison of past and present climatic patterns suggests that the spatial heterogeneity in the fossil record arises from a local response to the effects of greater summer solar radiation during the early Holocene. Solar radiation directly determines evapotranspiration and indirectly controls the strength of the summer monsoon and the eastern Pacific subtropical high-pressure system. The Yellowstone region provides an example of an area where the indirect effects of solar radiation are manifest by the juxtaposition of two contrasting climatic regimes today and where these regimes were amplified during the early Holocene. Fossil-pollen data suggest that central and southern Yellowstone (the summer-dry area) became drier in the early Holocene, while northern Yellowstone (the summer-wet area) became wetter. The boundary between regimes, however, is controlled by topography and has not changed significantly in the Holocene. The spatial variations of Holocene vegetation and climatic changes in the northern Rocky Mountains may therefore be explained as a trade-off between strengthened monsoonal circulation and a stronger subtropical high in the early Holocene and the relative importance of these precipitation regimes on a topographically complex landscape.Keywords
This publication has 20 references indexed in Scilit:
- Vegetation and Climate Change in Eastern North America Since the Last Glacial MaximumEcology, 1991
- Late Quaternary Vegetational History of Grays Lake, IdahoEcological Monographs, 1991
- Climatic Changes of the Last 18,000 Years: Observations and Model SimulationsScience, 1988
- Climate simulations for 9000 years before present: Seasonal variations and effect of the Laurentide ice sheetJournal of Geophysical Research: Atmospheres, 1988
- Eastern North AmericaPublished by Springer Nature ,1988
- A late quaternary pollen sequence from blacktail pond, Yellowstone national park, Wyoming, U.S.A.Palynology, 1986
- Vegetation responses to past climatic variationPlant Ecology, 1986
- Holocene Vegetational History of the Kootenai River Valley, MontanaQuaternary Research, 1983
- Postglacial History of Lost Trail Pass Bog, Bitterroot Mountains, MontanaArctic and Alpine Research, 1977
- Late Quaternary Vegetational Changes on the East Side of Yellowstone Park, WyomingQuaternary Research, 1974