Datasets

subject: Earth and Atmospheric Sciences type: dataset

Total is 18 Results
Vertical profile observations of water vapor deuterium excess in the lower troposphere

10.4231/1MZN-1C18

Brian H. Stirm , Kristian Hajny , Lisa R. Welp ORCID logo , Michael E. Baldwin , Olivia E. Salmon , Paul B. Shepson

08/15/2019

Airborne vertical profile measurements of water vapor stable isotopes to examine how boundary layer, cloud, and mixing processes influence the vertical structure of deuterium-excess in the lower troposphere.

Climate EAPS Earth and Atmospheric Sciences Flight Cruise Indianapolis Isotope Meteorology Washington Water Vapor Weather

Global CO Dynamics Model Output during 1901-2100

10.4231/JGZ8-9C75

Licheng Liu ORCID logo , Qianlai Zhuang ORCID logo

07/05/2019

Global soil CO fluxes during 1901-2013, 2000-2013 and 2014-2100 from model simulations. Together with published paper, figures and tables.

Atmospheric Chemistry Modeling Biogeochemistry Carbon Monoxide Climate Climate Dynamics EAPS Earth and Atmospheric Sciences

Microbial decomposition processes and vulnerable arctic soil organic carbon in the 21st century

10.4231/ANMV-J384

Junrong Zha , Qianlai Zhuang ORCID logo

07/25/2019

Various levels of representations of biogeochemical processes in current biogeochemistry models contribute to uncertainty in carbon budget quantification. Detailed microbial mechanisms were incorporated into TEM 5.0 (Terrestrial Ecosystem Model).

Arctic Region Biogeochemistry Carbon Dynamics Climate Change EAPS Earth and Atmospheric Sciences Microbial-Based Model Terrestrial Ecosystem Model (TEM)

Competing Topographic Mechanisms

10.4231/4KJV-B657

Matthew Huber ORCID logo , Rene Paul Acosta ORCID logo

01/06/2020

The Indo-Asian Monsoon (IAM) circulation is an exemplar for how tectonic processes interact with regional climate systems. This study aims to identify the impact of orography on the IAM using high-resolution models.

CESM Climate Earth and Atmospheric Sciences High-resolution Himalayas Monsoon Paleoclimate Tibet

Modeling the Sea Level Changes in Guam

10.4231/0A0F-7A84

Avnika Manaktala ORCID logo

10/14/2019

This project works on understanding the different statistical models that are available to analyze and predict mean sea level changes in Guam.

Climate Change Data Education Earth and Atmospheric Sciences FAIR Data Machine Learning Sea level rise Statistical analysis Statistical Methods

Competing Topographic Mechanisms

10.4231/M7JA-S342

Matthew Huber ORCID logo , Rene Paul Acosta ORCID logo

09/13/2021

The aim of this body of work is to identify the impact of Tibetan Plateau orography on the evolution of the Asian climate system.

CESM Climate Earth and Atmospheric Sciences Himalayas Monsoon Paleoclimate Tibet topography

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