PP005-07
Fingerprinting the Pacific Walker Circulation Using Precipitation δ18O
Abstract:
Water isotopes should be ideal tracers of the PWC because they encapsulate information about circulation-dependent processes including moisture source, transport, and delivery. Given this, the new PAGES Iso2k database of hundreds of published palaeo-isotopic proxy records (Konecky et al., 2020) provides unprecedented potential to infer past changes in the PWC over the past millennium. However, to realise this potential we must first understand the spatio-temporal isotopic fingerprint of the PWC and its variability.
We collated publicly available measurements of modern precipitation δ18O (δ18OP), and investigated relationships between PWC strength and δ18OP, precipitation amount, sea level pressure, and winds. We tested and employed multiple data processing and statistical techniques to maximise information from short, temporally and spatially discontinuous δ18OP measurements. We find that the PWC is the leading mode of variability in global δ18OP observations, with both strong and weak PWC anomalies associated with distinct spatial patterns in δ18OP. Regional isotopic patterns reflect changes in atmospheric circulation rather than local temperature or precipitation amount, suggesting a direct role for the PWC in driving the isotopic anomalies. Using EOF-based techniques, we identify approximately five regions with a robust isotopic signal of the PWC and then consider probable mechanisms for these relationships. The identified regions are found to be ideal targets for palaeo-PWC reconstructions. We thus use water isotope proxy records to derive preliminary reconstructions of the PWC over the past millennium.