Large-Scale Climate Controls of Interior Alaska River Ice Breakup

Author:

Bieniek Peter A.1,Bhatt Uma S.1,Rundquist Larry A.2,Lindsey Scott D.2,Zhang Xiangdong3,Thoman Richard L.4

Affiliation:

1. Geophysical Institute, and Department of Atmospheric Sciences, University of Alaska Fairbanks, Fairbanks, Alaska

2. NOAA/National Weather Service, Alaska-Pacific River Forecast Center, Anchorage, Alaska

3. International Arctic Research Center, University of Alaska Fairbanks, Fairbanks, Alaska

4. NOAA/National Weather Service, Weather Forecast Office, Fairbanks, Alaska

Abstract

AbstractFrozen rivers in the Arctic serve as critical highways because of the lack of roads; therefore, it is important to understand the key mechanisms that control the timing of river ice breakup. The relationships between springtime Interior Alaska river ice breakup date and the large-scale climate are investigated for the Yukon, Tanana, Kuskokwim, and Chena Rivers for the 1949–2008 period. The most important climate factor that determines breakup is April–May surface air temperatures (SATs). Breakup tends to occur earlier when Alaska April–May SATs and river flow are above normal. Spring SATs are influenced by storms approaching the state from the Gulf of Alaska, which are part of large-scale climate anomalies that compare favorably with ENSO. During the warm phase of ENSO fewer storms travel into the Gulf of Alaska during the spring, resulting in a decrease of cloud cover over Alaska, which increases surface solar insolation. This results in warmer-than-average springtime SATs and an earlier breakup date. The opposite holds true for the cold phase of ENSO. Increased wintertime precipitation over Alaska has a secondary impact on earlier breakup by increasing spring river discharge. Improved springtime Alaska temperature predictions would enhance the ability to forecast the timing of river ice breakup.

Publisher

American Meteorological Society

Subject

Atmospheric Science

Reference25 articles.

1. Progress in the study and management of river ice jams.;Beltaos;Cold Reg. Sci. Technol.,2008

2. Climatic control of river-ice hydrology: A review.;Beltaos;Hydrol. Processes,2002

3. Recent shifts in the state of the North Pacific.;Bond;Geophys. Res. Lett.,2003

4. Surface-based temperature inversions in Alaska from a climate perspective.;Bourne;Atmos. Res.,2010

5. Factors leading to a mild break-up of the Yukon River near Fort Selkirk: 1985.;Carmack,1985

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