DOE OSTI · 2997311
Arctic Impact Identification with Less Data Using Variable Relationships: An Exploratory Express LDRD project.
Abstract
Regional impacts from sea ice loss can be challenging to separate from internal climate variability, potentially requiring thousands of ensemble members. East Asian wintertime cooling has been linked to sea ice loss from present day conditions in the Polar Amplification Model Intercomparison Project with these large ensemble counts. This cooling is theorized to arise from a strengthened Siberian High and East Asian Jet response. The strengthened Siberian High can be detected with one fifth the ensemble members needed for the East Asian wintertime cooling in a single model. We thus hypothesize that leveraging relationships between multiple variables in a conditional pathways-based approach would reduce the number of required ensemble members to conclusively attribute East Asian wintertime cooling to future sea ice concentrations. In all analyzed cases, confidence was increased when evaluating sea ice loss’s responsibility for the joint effects of East Asian cooling, East Asian Jet strengthening, and Siberian High strengthening over just East Asian cooling. However, we were not able to confidently attribute future East Asian wintertime cooling to sea ice loss in a single model. We found that significant intra-ensemble variability within single Earth System Models (ESMs) produced highly uncertain forcing response models upon which attribution results were undermined. We were able to show that ensemble mean seasonally averaged metrics from multiple ESMs greatly improved the accuracy of the forcing response linear models and exposed the necessity of all three steps in the pathway (sea ice area, Siberian High pressure, and East Asian Jet speed) for accurate prediction of East Asian wintertime cooling. Although all three steps were necessary, East Asian wintertime cooling possesses a large dependence on the Siberian High pressure, which weakens the confidence associated with overall strong joint-attribution comparing present day and future scenarios. We believe transitioning the pathway nodes to relative changes between the Siberian High and Aleutian Low as well as between the midlatitude westerlies and subtropical jet in the East Asianj Jet region may be able to produce significant attribution more fully dependent upon all three steps. Ultimately, this research demonstrates the simple extensibility of conditional pathways-based attribution to sea ice loss forcing on the Earth system.
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Wentland, Christopher Robert [Sandia National Laboratories (SNL-CA), Livermore, CA (United States)] (ORCID:000000028500569X), Bull, Diana L. [Sandia National Laboratories (SNL-NM), Albuquerque, NM (United States)] (ORCID:0000000172349285), Peterson, Kara J. [Sandia National Laboratories (SNL-NM), Albuquerque, NM (United States)] (ORCID:0000000274707813), Swiler, Laura Painton [Sandia National Laboratories (SNL-NM), Albuquerque, NM (United States)] (ORCID:0000000163852241). 2025-09-01. Arctic Impact Identification with Less Data Using Variable Relationships: An Exploratory Express LDRD project.. https://doi.org/10.2172/2997311
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