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All Outputs (5)

A meta-model for understanding ‘green-red loop’ social-water interactions at a global scale (2024)
Journal Article
Liu, L., Chun, K., & Mijic, A. (2024). A meta-model for understanding ‘green-red loop’ social-water interactions at a global scale. Journal of Cleaner Production, 468, Article 143064. https://doi.org/10.1016/j.jclepro.2024.143064

Within the coupled human and natural systems (CHANS), social-water interactions exhibit the ‘green-loop’ and ‘red-loop’ patterns, where social development is dependent on the local and external environment for resource provision, respectively. Sustai... Read More about A meta-model for understanding ‘green-red loop’ social-water interactions at a global scale.

The IAHS Science for Solutions decade, with Hydrology Engaging Local People IN a Global world (HELPING) (2024)
Journal Article

The new scientific decade (2023-2032) of the International Association of Hydrological Sciences (IAHS) aims at searching for sustainable solutions to undesired water conditions - may it be too little, too much or too polluted. Many of the current iss... Read More about The IAHS Science for Solutions decade, with Hydrology Engaging Local People IN a Global world (HELPING).

Spatial heterogeneity in the response of winter wheat yield to meteorological dryness/wetness variations in Henan province, China (2024)
Journal Article
Li, C., Gu, Y., Xu, H., Huang, J., Liu, B., Chun, K., & Octavianti, T. (2024). Spatial heterogeneity in the response of winter wheat yield to meteorological dryness/wetness variations in Henan province, China. Agronomy, 14(4), 817. https://doi.org/10.3390/agronomy14040817

Knowledge of the responses of winter wheat yield to meteorological dryness/wetness variations is crucial for reducing yield losses in Henan province, China’s largest winter wheat production region, under the background of climate change. Data on clim... Read More about Spatial heterogeneity in the response of winter wheat yield to meteorological dryness/wetness variations in Henan province, China.

Dynamic hydrological niche segregation: How plants compete for water in a semi-arid ecosystem (2024)
Journal Article
Zhao, Y., Wang, L., Chun, K., Ziegler, A., & Evaristo, J. (2024). Dynamic hydrological niche segregation: How plants compete for water in a semi-arid ecosystem. Journal of Hydrology, 630, Article 130677. https://doi.org/10.1016/j.jhydrol.2024.130677

Hydrological niche segregation (HNS), specifically the variation in root water uptake depth among coexisting species, is an understudied area of research. This is especially the case in semi-arid ecosystems, such as China's Loess Plateau (CLP), where... Read More about Dynamic hydrological niche segregation: How plants compete for water in a semi-arid ecosystem.