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Responses to Climate Factors in the Radial Growth of Schrenk Spruce (Picea Schrenkiana) in the Yili Region, Northwest China


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Fig 1.

Map of the tree-ring sampling site and meteorological station in this study.
Map of the tree-ring sampling site and meteorological station in this study.

Fig 2.

Meteorological data.
Meteorological data.

Fig 3.

Variation of tree-ring width index at different elevations.
Variation of tree-ring width index at different elevations.

Fig 4.

Correlations between the tree-ring width chronologies and the meteorological data at different elevations.
Correlations between the tree-ring width chronologies and the meteorological data at different elevations.

Fig 5.

Moving correlation between the tree-ring width chronology and meteorological data at different elevations.
Moving correlation between the tree-ring width chronology and meteorological data at different elevations.

Tree-ring sampling point information.

Sample site Longitude Latitude Elevation (m) Species Aspect Canopy closure
High 81°02′2.37″ 43°24′37.48″ 2800–2810 P. schrenkiana N 0.1
Middle 81°02′6.41″ 43°25′14.50″ 2500–2565 P. schrenkiana N 0.2
Low 81°07′12.34″ 43°27′54.69″ 2000–2100 P. schrenkiana N 0.7

Statistical features of tree-ring width standardised chronology at different elevations.

Statistical characteristics High Middle Low
Percentage of the first eigenvector 0.285 0.397 0.451
Mean within-tree correlation coefficient 0.158 0.313 0.409
Signal-to-noise ratio 6.807 13.946 28.146
Representative of the sample to the population 0.872 0.933 0.966
Standard deviation 0.226 0.183 0.279
Mean sensitivity 0.171 0.126 0.210
First-order autocorrelation coefficient 0.589 0.653 0.596
eISSN:
1897-1695
Język:
Angielski
Częstotliwość wydawania:
Volume Open
Dziedziny czasopisma:
Geosciences, other