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The role of Southeast Asian island topography on Indo-Pacific climate and silicate weathering

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DataONE2023-12-07 更新2024-06-08 收录
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The modern configuration of the South East Asian Islands (SEAI) evolved over the last fifteen million years, as a result of subduction, arc magmatism, and arc-continent collisions, contributing to both increased land area and high topography.  The presence of the additional land area has been postulated to enhance convective rainfall, facilitating both increased silicate weathering and the development of the modern-day Walker circulation.  Using an Earth System Model in conjunction with a climate-silicate weathering model, we argue instead for a significant role of SEAI topography for both effects.  This dataset archives model output used in this investigation, including simulations using the Community Earth System Model version 1.2, and the climate-silicate weathering model GEOCLIM., , The dataset contains model output from: Chiang, JCH, P Maffre, NL Swanson-Hysell, and FA Macdonald, 2023: The role of Southeast Asian Island  topography on Indo-Pacific climate and silicate weathering.  Revised for Paleoceanography and Paleoclimate, Nov 2023. All data are in Netcdf format, and were generated either by the Community Earth System Model 1.2 (Hurrell et al. 2013) or the climate-silicate weathering model GEOCLIM (Park et al. 2020). Model output is organized into 6 tar files: 1) B1850C5.tar Contains model output for the fully coupled CESM1.2 runs.  Monthly mean data for years 41-110 of the simulations.   a) Atmosphere model output for 2D fields and for 3D pressure vertical velocity (W) between 10S-10N. Filename description is 0% SEAI topography (aka flat SEAI): B1850C5_noSEAItopo_y41-110.nc and B1850C5_noSEAItopo_W_y41-110.nc 50% SEAI topography: B1850C5_0.5SEAItopo_y41-110.nc and B1850C5_0.5SEAItopo_W_y41-110.nc 100% SEAI topography (aka modern SEAI): B1850C5_y41-110.nc and ..., Data from \"The role of Southeast Asian Island topography on Indo-Pacific Climate and Silicate Weathering\" \-- The dataset contains model output from: Chiang, JCH, P Maffre, NL Swanson-Hysell, and FA Macdonald, 2023: The role of Southeast Asian Island topography on Indo-Pacific climate and silicate weathering. Revised for Paleoceanography and Paleoclimate, Nov 2023. All data are in Netcdf format, and were generated either by the Community Earth System Model 1.2 (Hurrell et al. 2013) or the climate-silicate weathering model GEOCLIM (Park et al. 2020). Model output is organized into 6 tar files: 1.B1850C5.tar Contains model output for the fully coupled CESM1.2 runs. Monthly mean data for years 41-110 of the simulations. a) Atmosphere model output for 2D fields and for 3D pressure vertical velocity (W) between 10S-10N. Filename description is 0% SEAI topography (aka flat SEAI): B1850C5_noSEAItopo_y41-110.nc and B1850C5_noSEAItopo_W_y41-110.nc 50% SEAI topography: B1850C5_0.5SEAIto...
创建时间:
2023-12-08
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