Diurnal to interannual rainfall δ 18 O variations in northern Borneo driven by regional hydrology

The relationship between climate variability and rainfall oxygen isotopic (δ18O) variability is poorly constrained, especially in the tropics, where many key paleoclimate records rely on past rainfall isotopes as proxies for hydroclimate. Here we present a daily-resolved, 5-yr-long timeseries of rai...

Full description

Saved in:
Bibliographic Details
Main Authors: Jessica W, Moerman, Kim M, Cobb, Jess F, Adkins, Harald, Sodemann, Brian, Clark, Andrew Alek, Tuen
Format: E-Article
Language:English
Published: Elsevier 2013
Subjects:
Online Access:http://ir.unimas.my/id/eprint/6992/1/Diurnal%20tointerannualrainfall%20%CE%B418O%20variationsinnorthernBorneo.pdf
http://ir.unimas.my/id/eprint/6992/
http://www.sciencedirect.com/science/article/pii/S0012821X13001350
Tags: Add Tag
No Tags, Be the first to tag this record!
id my.unimas.ir.6992
record_format eprints
spelling my.unimas.ir.69922015-04-21T06:59:10Z http://ir.unimas.my/id/eprint/6992/ Diurnal to interannual rainfall δ 18 O variations in northern Borneo driven by regional hydrology Jessica W, Moerman Kim M, Cobb Jess F, Adkins Harald, Sodemann Brian, Clark Andrew Alek, Tuen QB Astronomy The relationship between climate variability and rainfall oxygen isotopic (δ18O) variability is poorly constrained, especially in the tropics, where many key paleoclimate records rely on past rainfall isotopes as proxies for hydroclimate. Here we present a daily-resolved, 5-yr-long timeseries of rainfall δ18O from Gunung Mulu National Park, located in northern Borneo (4°N, 114°E) in the heart of the West Pacific Warm Pool, and compare it to local and regional climatic variables. Daily rainfall δ18O values range from +0.7‰ to −18.5‰ and exhibit a weak but significant inverse relationship with daily local precipitation amount (R=−0.19, p<0.05), consistent with the tropical amount effect. Day-to-day δ18O variability at Mulu is best correlated to regional precipitation amount averaged over the preceding week (R=−0.64, p<0.01). The inverse relationship between Mulu rainfall δ18O and local (regional) precipitation amount increases with increased temporal averaging, reaching R=−0.56 (R=−0.72) on monthly timescales. Large, negative, multi-day rainfall δ18O anomalies of up to 16‰ occur every 30–90 days and are closely associated with wet phases of the intraseasonal Madden–Julian Oscillation. A weak, semi-annual seasonal cycle in rainfall δ18O of 2–3‰ bears little resemblance to seasonal precipitation variability, pointing to a complex sequence of moisture sources and/or trajectories over the course of the year. Interannual rainfall δ18O variations of 6–8‰ are significantly correlated with indices of the El Niño Southern Oscillation, with increased rainfall δ18O during relatively dry El Niño conditions, and vice versa during La Nina events. We find that Mulu rainfall δ18O outperforms Mulu precipitation amount as a tracer of basin-scale climate variability, highlighting the time- and space-integrative nature of rainfall δ18O. Taken together, our results suggest that rainfall δ18O variability at Mulu is significantly influenced by the strength of regional convective activity. As such, our study provides further empirical support for the interpretation of δ18O-based paleo-reconstructions from northern Borneo stalagmites as robust indicators of regional-scale hydroclimate variability, where higher δ18O reflects regional drying. Elsevier 2013 E-Article PeerReviewed text en http://ir.unimas.my/id/eprint/6992/1/Diurnal%20tointerannualrainfall%20%CE%B418O%20variationsinnorthernBorneo.pdf Jessica W, Moerman and Kim M, Cobb and Jess F, Adkins and Harald, Sodemann and Brian, Clark and Andrew Alek, Tuen (2013) Diurnal to interannual rainfall δ 18 O variations in northern Borneo driven by regional hydrology. Earth and Planetary Science Letters, 369 (-). pp. 108-119. ISSN 0012-821X http://www.sciencedirect.com/science/article/pii/S0012821X13001350 doi:10.1016/j.epsl.2013.03.014
institution Universiti Malaysia Sarawak
building Centre for Academic Information Services (CAIS)
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Sarawak
content_source UNIMAS Institutional Repository
url_provider http://ir.unimas.my/
language English
topic QB Astronomy
spellingShingle QB Astronomy
Jessica W, Moerman
Kim M, Cobb
Jess F, Adkins
Harald, Sodemann
Brian, Clark
Andrew Alek, Tuen
Diurnal to interannual rainfall δ 18 O variations in northern Borneo driven by regional hydrology
description The relationship between climate variability and rainfall oxygen isotopic (δ18O) variability is poorly constrained, especially in the tropics, where many key paleoclimate records rely on past rainfall isotopes as proxies for hydroclimate. Here we present a daily-resolved, 5-yr-long timeseries of rainfall δ18O from Gunung Mulu National Park, located in northern Borneo (4°N, 114°E) in the heart of the West Pacific Warm Pool, and compare it to local and regional climatic variables. Daily rainfall δ18O values range from +0.7‰ to −18.5‰ and exhibit a weak but significant inverse relationship with daily local precipitation amount (R=−0.19, p<0.05), consistent with the tropical amount effect. Day-to-day δ18O variability at Mulu is best correlated to regional precipitation amount averaged over the preceding week (R=−0.64, p<0.01). The inverse relationship between Mulu rainfall δ18O and local (regional) precipitation amount increases with increased temporal averaging, reaching R=−0.56 (R=−0.72) on monthly timescales. Large, negative, multi-day rainfall δ18O anomalies of up to 16‰ occur every 30–90 days and are closely associated with wet phases of the intraseasonal Madden–Julian Oscillation. A weak, semi-annual seasonal cycle in rainfall δ18O of 2–3‰ bears little resemblance to seasonal precipitation variability, pointing to a complex sequence of moisture sources and/or trajectories over the course of the year. Interannual rainfall δ18O variations of 6–8‰ are significantly correlated with indices of the El Niño Southern Oscillation, with increased rainfall δ18O during relatively dry El Niño conditions, and vice versa during La Nina events. We find that Mulu rainfall δ18O outperforms Mulu precipitation amount as a tracer of basin-scale climate variability, highlighting the time- and space-integrative nature of rainfall δ18O. Taken together, our results suggest that rainfall δ18O variability at Mulu is significantly influenced by the strength of regional convective activity. As such, our study provides further empirical support for the interpretation of δ18O-based paleo-reconstructions from northern Borneo stalagmites as robust indicators of regional-scale hydroclimate variability, where higher δ18O reflects regional drying.
format E-Article
author Jessica W, Moerman
Kim M, Cobb
Jess F, Adkins
Harald, Sodemann
Brian, Clark
Andrew Alek, Tuen
author_facet Jessica W, Moerman
Kim M, Cobb
Jess F, Adkins
Harald, Sodemann
Brian, Clark
Andrew Alek, Tuen
author_sort Jessica W, Moerman
title Diurnal to interannual rainfall δ 18 O variations in northern Borneo driven by regional hydrology
title_short Diurnal to interannual rainfall δ 18 O variations in northern Borneo driven by regional hydrology
title_full Diurnal to interannual rainfall δ 18 O variations in northern Borneo driven by regional hydrology
title_fullStr Diurnal to interannual rainfall δ 18 O variations in northern Borneo driven by regional hydrology
title_full_unstemmed Diurnal to interannual rainfall δ 18 O variations in northern Borneo driven by regional hydrology
title_sort diurnal to interannual rainfall δ 18 o variations in northern borneo driven by regional hydrology
publisher Elsevier
publishDate 2013
url http://ir.unimas.my/id/eprint/6992/1/Diurnal%20tointerannualrainfall%20%CE%B418O%20variationsinnorthernBorneo.pdf
http://ir.unimas.my/id/eprint/6992/
http://www.sciencedirect.com/science/article/pii/S0012821X13001350
_version_ 1644510186721771520
score 13.154949