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    The Dendroclimatological Potential of Willamette Valley Quercus garryana

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    Author
    Gildehaus, S.
    Arabas, K.
    Larson, E.
    Copes-Gerbitz, K.
    Issue Date
    2015-01
    Keywords
    Dendroclimatology
    Oregon
    Pacific Decadal Oscillation
    Quercus garryana
    Willamette Valley
    
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    Citation
    Stevie Gildehaus, Karen Arabas, Evan Larson, and Kelsey Copes-Gerbitz "The Dendroclimatological Potential of Willamette Valley Quercus garryana," Tree-Ring Research 71(1), 13-23, (1 January 2015).
    Publisher
    Tree Ring Society
    Journal
    Tree-Ring Research
    URI
    http://hdl.handle.net/10150/656862
    DOI
    10.3959/1536-1098-71.1.13
    Additional Links
    http://www.treeringsociety.org
    Abstract
    We develop a 341-year Oregon white oak (Quercus garryana Dougl.) tree-ring chronology in Oregon's Willamette Valley to evaluate climate-growth relationships and determine the species' dendroclimatological potential at our site and in the surrounding region. The standardized and residual chronologies exhibit significant positive correlations with previous-year April and May temperatures, inverse correlations with previous-year spring precipitation and summer PDSI, a positive correlation with current-year July precipitation and summer PDSI, and inverse correlations with current-year June temperatures. The strength of these relationships varies over time. Significant shifts in the chronologies' mean and variance align with phase changes in the Pacific Decadal Oscillation (PDO), with lower and more variable growth during the warmer, drier positive phase of the PDO over the instrumental record. The absence of similar shifts prior to the 1900s, suggests a lack of temporal consistency in the expression of PDO variability at our site. The strong crossdating at our site reflects a cohesive climate signal, and the climate analysis illustrates the potential to develop proxy data over multiple centuries. Together, these results indicate a potential to expand the network of currently available climate proxy data by utilizing Q. garryana in dendroclimatological research. © 2015 The Tree-Ring Society.
    Type
    Article
    text
    Language
    en
    ISSN
    1536-1098
    EISSN
    2162-4585
    ae974a485f413a2113503eed53cd6c53
    10.3959/1536-1098-71.1.13
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    Tree-Ring Research, Volume 71, Issue 1 (Jan 2015)

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