Tuinenburg, OA et al. (2020): Global evaporation to precipitation flows obtained with Lagrangian atmospheric moisture tracking
English
Germany, Bremerhaven
Theeuwen
数据描述

This dataset presents a global dataset of atmospheric moisture flows from evaporation to precipitation on a 0.5° spatial resolution. The data, simulating moisture flows between cells from 2008 to 2016, provides monthly climatological means calculated using a Lagrangian moisture tracking scheme forced with ERA5 reanalysis data. The resulting network allows for the identification and quantification of rainfall sources and evaporation sinks for any area on Earth.
doi.pangaea.de
IP: 134.1.2.171
加载中...
相关论文
9The disproportionate impact of enhanced evaporation from melting arctic sea ice on cold-season land precipitation trends
Yubo Liu•Qiuhong Tang•Chi Zhang•Deliang Chen•Jennifer A. Francis等 7 人
Npj Climate And Atmospheric Science
2024
•2024/6/11
•Vol.7 No.1 p.1-9
Diminishing Arctic sea ice has led to enhanced evaporation from the Arctic marginal seas (AMS), which is expected to alter precipitation over land. In this work, AMS evaporation is numerically tracked to quantify its contribution to cold-season (October–March) precipitation over land in the Northern...
Atmospheric scienceClimate change
10.1038/S41612-024-00680-8
ISSN:2397-3722
Reconciling tracked atmospheric water flows to close the global freshwater cycle
Elena De Petrillo•Simon Felix Fahrländer•Marta Tuninetti•Lauren Seaby Andersen•Luca Monaco等 7 人
Communications Earth & Environment
2025
•2025/5/5
•Vol.6 No.1 p.1-13
Atmospheric moisture flows play a vital role in the hydrological cycle, connecting evaporation sources to precipitation sinks. While high-resolution tracking models provide valuable insights, discrepancies arise comparing tracked flows to atmospheric reanalysis data. Here we reconcile tracked atmosp...
DatabasesHydrologyWater resources
10.1038/S43247-025-02289-Y
ISSN:2662-4435
Spatiotemporal inequality in land water availability amplified by global tree restoration
Beilei Zan•Jun Ge•Mengyuan Mu•Qiaohong Sun•Xing Luo等 6 人
Nature Water
2024
•2024/8/21
•00 p.1-12
Afforestation can influence evapotranspiration (E) and precipitation (P), thereby altering water availability (known as P − E) on land. However, such effects on P − E have rarely been examined in the context of seasonal and spatial variations in background P − E conditions. Here we show the impacts ...
Forest ecologyHydrology
10.1038/S44221-024-00296-5
ISSN:2731-6084
Shifts in regional water availability due to global tree restoration
Hoek van Dijke Anne J.•Herold Martin•Mallick Kaniska•Benedict Imme•Machwitz Miriam等 10 人
Nature Geoscience
2022
•2022/5/11
•Vol.15 No.5 p.363-368
Tree restoration is an effective way to store atmospheric carbon and mitigate climate change. However, large-scale tree-cover expansion has long been known to increase evaporation, leading to reduced local water availability and streamflow. More recent studies suggest that increased precipitation, t...
Climate changeClimate sciencesEnvironmental impactHydrology
10.1038/S41561-022-00935-0
ISSN:1752-0894
Uncovering the hidden role of peri-urban vegetation in modulating urban precipitation
Rui Shao•Jiaqi Li•Weiwei Shao•Yicheng Wang•Dawen Yang等 12 人
Nature Cities
2026
•2026/3/30
•00 p.1-12
Peri-urban vegetation influences urban hydroclimates, yet its role in shaping urban precipitation remains understudied due to binary urban–non-urban framings, the limited representation of peri-urban landscapes in models and datasets, and a predominant focus on intra-urban areas. Here we integrate s...
Climate-change ecologyClimate-change impactsEcosystem servicesUrban ecology
10.1038/S44284-026-00416-0
ISSN:2731-9997
Upwind terrestrial influences on soil moisture variability across South America
Feini Huang•Shijie Jiang•Wei Shangguan•Gustau Camps-Valls•Alexander Winkler等 11 人
Nature Communications
2026
•2026/7/24
•Vol.17 No.1 p.72560
Soil moisture across South America exhibits coherent spatial patterns shaped by upwind terrestrial conditions, yet their downwind propagation remains poorly quantified. We develop an observation-driven framework integrating atmospheric transport trajectories with deep learning to estimate vegetation...
Atmospheric dynamicsHydrology
10.1038/S41467-026-75637-X
ISSN:2041-1723
Carbon restoration potential on global land under water resource constraints
Shouzhang Peng•César Terrer•Benjamin Smith•Philippe Ciais•Qinggong Han等 10 人
Nature Water
2024
•2024/10/24
•00 p.1-11
Ecosystem restoration is a critical nature-based solution to mitigate climate change. However, the carbon sequestration potential of restoration, defined as the maximum achievable carbon storage, has likely been overestimated because previous studies have not adequately accounted for the competition...
Restoration ecologySustainabilityWater resources
10.1038/S44221-024-00323-5
ISSN:2731-6084
Network motifs shape distinct functioning of Earth’s moisture recycling hubs
Wunderling Nico•Wolf Frederik•Tuinenburg Obbe A.•Staal Arie
Nature Communications
2022
•2022/11/2
•Vol.13 No.1 p.1-8
Earth’s hydrological cycle critically depends on the atmospheric moisture flows connecting evaporation to precipitation. Here we convert a decade of reanalysis-based moisture simulations into a high-resolution global directed network of spatial moisture provisions. We reveal global and local network...
Climate-change ecologyEcological networksHydrology
10.1038/S41467-022-34229-1
ISSN:2041-1723
Forests support global crop supply through atmospheric moisture transport
Agnes Pranindita•Adriaan J. Teuling•Ingo Fetzer•Lan Wang-Erlandsson
Nature Water
2025
•2025/10/23
•00 p.1-13
Anomalous precipitation patterns associated with climate change increasingly threaten global crop supply. Forests, as major moisture source, could potentially buffer these risks, yet their specific role in sustaining agriculture and global crop supply remains underexplored. We investigate global for...
AgricultureForestryHydrologyWater resources
10.1038/S44221-025-00518-4
ISSN:2731-6084