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contributor authorKlos, P. Zion
contributor authorAbatzoglou, John T.
contributor authorBean, Alycia
contributor authorBlades, Jarod
contributor authorClark, Melissa A.
contributor authorDodd, Megan
contributor authorHall, Troy E.
contributor authorHaruch, Amanda
contributor authorHiguera, Philip E.
contributor authorHolbrook, Joseph D.
contributor authorJansen, Vincent S.
contributor authorKemp, Kerry
contributor authorLankford, Amber
contributor authorLink, Timothy E.
contributor authorMagney, Troy
contributor authorMeddens, Arjan J. H.
contributor authorMitchell, Liza
contributor authorMoore, Brandon
contributor authorMorgan, Penelope
contributor authorNewingham, Beth A.
contributor authorNiemeyer, Ryan J.
contributor authorSoderquist, Ben
contributor authorSuazo, Alexis A.
contributor authorVierling, Kerri T.
contributor authorWalden, Von
contributor authorWalsh, Chelsea
date accessioned2017-06-09T17:37:57Z
date available2017-06-09T17:37:57Z
date copyright2015/07/01
date issued2015
identifier issn1948-8327
identifier otherams-88431.pdf
identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4232210
description abstractlimate change is well documented at the global scale, but local and regional changes are not as well understood. Finer, local- to regional-scale information is needed for creating specific, place-based planning and adaption efforts. Here the development of an indicator-focused climate change assessment in Idaho is described. This interdisciplinary framework couples end users? data needs with observed, biophysical changes at local to regional scales. An online statewide survey of natural resource professionals was conducted to assess the perceived impacts from climate change and determine the biophysical data needed to measure those impacts. Changes to water resources and wildfire risk were the highest areas of concern among resource professionals. Guided by the survey results, 15 biophysical indicator datasets were summarized that included direct climate metrics (e.g., air temperature) and indicators only partially influenced by climate (e.g., wildfire). Quantitative changes in indicators were determined using time series analysis from 1975 to 2010. Indicators displayed trends of varying likelihood over the analysis period, including increasing growing-season length, increasing annual temperature, increasing forest area burned, changing mountain bluebird and lilac phenology, increasing precipitation intensity, earlier center of timing of streamflow, and decreased 1 April snowpack; changes in volumetric streamflow, salmon migration dates, and stream temperature displayed the least likelihood. A final conceptual framework derived from the social and biophysical data provides an interdisciplinary case example useful for consideration by others when choosing indicators at local to regional scales for climate change assessments.
publisherAmerican Meteorological Society
titleIndicators of Climate Change in Idaho: An Assessment Framework for Coupling Biophysical Change and Social Perception
typeJournal Paper
journal volume7
journal issue3
journal titleWeather, Climate, and Society
identifier doi10.1175/WCAS-D-13-00070.1
journal fristpage238
journal lastpage254
treeWeather, Climate, and Society:;2015:;volume( 007 ):;issue: 003
contenttypeFulltext


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