Sampling density and date along with species selection influence spatial representation of tree-ring reconstructions
<p>Our understanding of the natural variability of hydroclimate before the instrumental period (ca. 1900 CE in the United States) is largely dependent on tree-ring-based reconstructions. Large-scale soil moisture reconstructions from a network of tree-ring chronologies have greatly...
Main Authors: | , , , , , , |
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Format: | Article |
Language: | English |
Published: |
Copernicus Publications
2020-10-01
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Series: | Climate of the Past |
Online Access: | https://cp.copernicus.org/articles/16/1901/2020/cp-16-1901-2020.pdf |
Summary: | <p>Our understanding of the natural variability of hydroclimate
before the instrumental period (ca. 1900 CE in the United States) is largely
dependent on tree-ring-based reconstructions. Large-scale soil moisture
reconstructions from a network of tree-ring chronologies have greatly
improved our understanding of the spatial and temporal variability in
hydroclimate conditions, particularly extremes of both drought and pluvial
(wet) events. However, certain regions within these large-scale network
reconstructions in the US are modeled by few tree-ring chronologies.
Further, many of the chronologies currently publicly available on the
International Tree-Ring Data Bank (ITRDB) were collected in the 1980s and
1990s, and thus our understanding of the sensitivity of radial growth to soil
moisture in the US is based on a period that experienced multiple extremely
severe droughts and neglects the impacts of recent, rapid global change. In
this study, we expanded the tree-ring network of the Ohio River valley in
the US, a region with sparse coverage. We used a total of 72 chronologies
across 15 species to examine how increasing the density of the tree-ring
network influences the representation of reconstructing the Palmer
Meteorological Drought Index (PMDI). Further, we tested how the sampling
date and therefore the calibration period influenced the reconstruction
models by creating reconstructions that ended in the year 1980 and compared
them to reconstructions ending in 2010 from the same chronologies. We found
that increasing the density of the tree-ring network resulted in
reconstructed values that better matched the spatial variability of
instrumentally recorded droughts and, to a lesser extent, pluvials. By
extending the calibration period to 2010 compared to 1980, the sensitivity
of tree rings to PMDI decreased in the southern portion of our region where
severe drought conditions have been absent over recent decades. We emphasize
the need of building a high-density tree-ring network to better represent
the spatial variability of past droughts and pluvials. Further, chronologies
on the ITRDB need updating regularly to better understand how the
sensitivity of tree rings to climate may vary through time.</p> |
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ISSN: | 1814-9324 1814-9332 |