A multidecadal oscillation in precipitation and temperature series is pronounced in low flow series from Puget Sound streams

Author:

Georgiadis Nicholas J.1ORCID,Baker Joel E.1ORCID

Affiliation:

1. Puget Sound Institute University of Washington Tacoma Washington USA

Abstract

AbstractIn Pacific Northwest streams, summer low flows limit water available to competing instream (salmon) and out‐of‐stream (human) uses, creating broad interest in how and why low flows are trending. Analyses that assumed linear (monotonic) change over the last ~60 years revealed declining low flow trends in minimally disturbed streams. Here, polynomials were used to model flow trends between 1929 and 2015. A multidecadal oscillation was observed in flows, which increased initially from the 1930s until the 1950s, declined until the 1990s, and then increased again. A similar oscillation was detected in precipitation series, and opposing oscillations in surface temperature, Pacific Decadal Oscillation, and Interdecadal Pacific Oscillation series. Multidecadal oscillations with similar periods to those described here are well known in climate indices. Fitted model terms were consistent with flow trends being influenced by at least two drivers, one oscillating and the other monotonic. Anthropogenic warming is a candidate driver for the monotonic decline, and variation in (internal) climatic circulation for the oscillating trend, but others were not ruled out. The recent upturn in streamflows suggests that anthropogenic warming has not been the dominant factor driving streamflow trends, at least until 2015. Climate projections based on simulations that omit drivers of multidecadal variation are likely to underestimate the range, and rate of change, of future climatic variation.

Publisher

Wiley

Subject

Earth-Surface Processes,Water Science and Technology,Ecology

Reference46 articles.

1. Seasonal Climate Variability and Change in the Pacific Northwest of the United States

2. Questionable Evidence of Natural Warming of the Northwestern United States;Abatzoglou J.T.;Proceedings of the National Academy of Sciences of the United States of America,2014

3. RESTORING SALMON HABITAT FOR A CHANGING CLIMATE

4. Hydrologic Signals and Surprises in U.S. Streamflow Records During Urbanization

5. Hydrologic effects of logging in western Washington, United States

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