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Journal Article

The first ensemble of kilometer-scale simulations of a hydrological year over the third pole

Emily Collier; Nikolina Ban; Niklas Richter; Bodo Ahrens; Deliang Chen; Xingchao Chen; Hui-Wen Lai; Ruby Leung; Lu Li; Alzbeta Medvedova; Tinghai Ou; Praveen Kumar Pothapakula; Emily Potter; Andreas F. Prein; Koichi Sakaguchi; Marie Schroeder; Prashant Singh; Stefan Sobolowski; Shiori Sugimoto; Jianping Tang; Hongyong Yu; Catharina Ziska
Climate Dynamics · Vol. 62, Issue 8 · pp. 7501-7518 · 2024

Abstract

An accurate understanding of the current and future water cycle over the Third Pole is of great societal importance, given the role this region plays as a water tower for densely populated areas downstream. An emerging and promising approach for skillful climate assessments over regions of complex terrain is kilometer-scale climate modeling. As a foundational step towards such simulations over the Third Pole, we present a multi-model and multi-physics ensemble of kilometer-scale regional simulations for the hydrological year of October 2019 to September 2020. The ensemble consists of 13 simulations performed by an international consortium of 10 research groups, configured with a horizontal grid spacing ranging from 2.2 to 4 km covering all of the Third Pole region. These simulations are driven by ERA5 and are part of a Coordinated Regional Climate Downscaling EXperiment Flagship Pilot Study on Convection-Permitting Third Pole. The simulations are compared against available gridded and in-situ observations and remote-sensing data, to assess the performance and spread of the model ensemble compared to the driving reanalysis during the cold and warm seasons. Although ensemble evaluation is hindered by large differences between the gridded precipitation datasets used as a reference over this region, we show that the ensemble improves on many warm-season precipitation metrics compared with ERA5, including most wet-day and hour statistics, and also adds value in the representation of wet spells in both seasons. As such, the ensemble will provide an invaluable resource for future improvements in the process understanding of the hydroclimate of this remote but important region.

Bibliographic Information

JournalClimate Dynamics
PublisherSpringer
Publication Date2024-08-01
Publication Year2024
Volume62
Issue8
Pages7501-7518
Document TypeJournal Article
Print ISSN0930-7575
eISSN1432-0894
DOI10.1007/s00382-024-07291-2

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NARA Access Coverage1986-01-01~Current
Journal Homepagehttps://www.springer.com/journal/382
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