2019Paleoceanography and PaleoclimatologyRequires access

Deciphering Oxygen Isotope Records From Chinese Speleothems With an Isotope‐Enabled Climate Model

Jun Hu, Julien Emile‐Geay, Clay Tabor, Jesse Nusbaumer, J. W. Partin

Open publisher page 112 citations

Abstract

Abstract Speleothem δ 18 O is widely used to reconstruct past hydroclimate variability, particularly over Asia. However, the interpretation of this proxy is still in debate. While this proxy is originally interpreted as regional rainfall amount of the Asian monsoon, other studies have interpreted it as upstream monsoon rainfall or atmospheric circulation changes. To better understand the signal preserved in speleothems over various time scales, this study employs a state‐of‐the‐art isotope‐enabled climate model to quantify contributions to the oxygen isotope composition of precipitation ( ) over China. Results suggest that orbital‐scale speleothem δ 18 O variations at Chinese sites mainly record the meridional migration of the Asian monsoon circulation, accompanied by an early northward movement of the East Asian rain belt. At interannual scales, Chinese speleothem δ 18 O is also tied to the intensity of monsoonal circulation, via a change in moisture source locations: Enhanced moisture delivery from remote source regions leads to more negative , particularly in late summer and early autumn. Our results have implications for the hydroclimatic interpretation of speleothem δ 18 O from Chinese caves and suggest that this interpretation is time scale dependent.

About this research paper

What this paper is about

Abstract Speleothem δ 18 O is widely used to reconstruct past hydroclimate variability, particularly over Asia. However, the interpretation of this proxy is still in debate. While this proxy is originally interpreted as regional rainfall amount of the Asian monsoon, other studies have interpreted it as upstream monsoon rainfall or atmospheric circulation changes. To better understand the signal preserved in speleothems over various time scales, this study employs a state‐of‐the‐art isotope‐enabled climate model to quantify contributions to the oxygen isotope composition of precipitation ( ) over China. Results suggest that orbital‐scale speleothem δ 18 O variations at Chinese sites mainly record the meridional migration of the Asian monsoon circulation, accompanied by an early northward movement of the East Asian rain belt. At interannual scales, Chinese speleothem δ 18 O is also tied to the intensity of monsoonal circulation, via a change in moisture source locations: Enhanced moisture delivery from remote source regions leads to more negative , particularly in late summer and early autumn. Our results have implications for the hydroclimatic interpretation of speleothem δ 18 O from Chinese caves and suggest that this interpretation is time scale dependent.

Why it matters

OpenAlex reports 112 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Abstract Speleothem δ 18 O is widely used to reconstruct past hydroclimate variability, particularly over Asia. However, the interpretation of this proxy is still in debate. While this proxy is originally interpreted as regional rainfall amount of the Asian monsoon, other studies have interpreted it as upstream monsoon rainfall or atmospheric circulation changes. To better understand the signal preserved in speleothems over various time scales, this study employs a state‐of‐the‐art isotope‐enabled climate model to quantify contributions to the oxygen isotope composition of precipitation ( ) over China. Results suggest that orbital‐scale speleothem δ 18 O variations at Chinese sites mainly record the meridional migration of the Asian monsoon circulation, accompanied by an early northward movement of the East Asian rain belt. At interannual scales, Chinese speleothem δ 18 O is also tied to the intensity of monsoonal circulation, via a change in moisture source locations: Enhanced moisture delivery from remote source regions leads to more negative , particularly in late summer and early autumn. Our results have implications for the hydroclimatic interpretation of speleothem δ 18 O from Chinese caves and suggest that this interpretation is time scale dependent.

Key concepts: Speleothem, East Asian Monsoon, Monsoon, Climatology, Stalagmite, Isotopes of oxygen, Precipitation, Proxy (statistics)

Related papers

Back to paper searchBrowse research topicsOriginal source
Deciphering Oxygen Isotope Records From Chinese Speleothems With an Isotope‐Enabled Climate Model — Research Paper | ScholarLens