Xuanze Zhang
Biographic Data
| ID | 7999467 |
|---|---|
| NAME | Xuanze Zhang |
| GIVEN NAMES | Xuanze |
| FAMILY NAME | Zhang |
| SIGNATURE | ZHANG X |
| AFFILIATIONS | Institute of Geographic Sciences and Natural Resources Research |
| ORCID | 0000-0001-8515-5084 |
| VERIFIED | Yes |
| TOTAL WORKS | 3 |
| TOTAL CITATIONS | 0 |
| AUTHOR COUNT | 3 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2021 |
| LATEST PUBLICATION YEAR | 2024 |
| H-INDEX | 0 |
Groundwater exhibits spatially opposing trends during the Australian Millennium Drought
The adverse impacts of Australia’s Millennium Drought on both surface and groundwater hydrological systems are extensively documented. During the Millennium Drought, the Murray Basin experienced a severe rainfall deficit. Our study revisited groundwater table trends in 451 wells within the Murray Basin during the drought from 1997 to 2009. These trends varied, 70% showed significant downward shifts, 19% were insignificant, and 11% even displayed …
CO 2 fertilization is spatially distinct from stomatal conductance reduction in controlling ecosystem water-use efficiency increase
It is well known that global ecosystem water-use efficiency (EWUE) has noticeably increased over the last several decades. However, it remains unclear how individual environmental drivers contribute to EWUE changes, particularly from CO 2 fertilization and stomatal suppression effects. Using a satellite-driven water–carbon coupling model—Penman–Monteith–Leuning version 2 (PML-V2), we quantified individual contributions from the observational driv…
Greening-induced increase in evapotranspiration over Eurasia offset by CO 2 -induced vegetational stomatal closure
Evapotranspiration (ET), as a key exchanging component of the land energy, water and carbon cycles, is expected to increase in response to greening land under a warming climate. However, the relative importance of major drivers (e.g. leaf area index (LAI), climate forcing, atmospheric CO 2 , etc) to long-term ET change remain largely unclear. Focusing on the Eurasia which experienced the strong vegetational greening, we aim to estimate the long-t…
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Greening-induced increase in evapotranspiration over Eurasia offset by CO 2 -induced vegetational stomatal closure
Evapotranspiration (ET), as a key exchanging component of the land energy, water and carbon cycles, is expected to increase in response to greening land under a warming climate. However, the relative importance of major drivers (e.g. leaf area index (LAI), climate forcing, atmospheric CO 2 , etc) to long-term ET change remain largely unclear. Focusing on the Eurasia which experienced the strong vegetational greening, we aim to estimate the long-t…
CO 2 fertilization is spatially distinct from stomatal conductance reduction in controlling ecosystem water-use efficiency increase
It is well known that global ecosystem water-use efficiency (EWUE) has noticeably increased over the last several decades. However, it remains unclear how individual environmental drivers contribute to EWUE changes, particularly from CO 2 fertilization and stomatal suppression effects. Using a satellite-driven water–carbon coupling model—Penman–Monteith–Leuning version 2 (PML-V2), we quantified individual contributions from the observational driv…
Groundwater exhibits spatially opposing trends during the Australian Millennium Drought
The adverse impacts of Australia’s Millennium Drought on both surface and groundwater hydrological systems are extensively documented. During the Millennium Drought, the Murray Basin experienced a severe rainfall deficit. Our study revisited groundwater table trends in 451 wells within the Murray Basin during the drought from 1997 to 2009. These trends varied, 70% showed significant downward shifts, 19% were insignificant, and 11% even displayed …
Climate variability and models (3 works) · Ecology (3 works) · Environmental Science (3 works) · Hydrology and Watershed Management Studies (3 works) · Albedo (alchemy (2 works) · Atmospheric sciences (2 works) · Climate change (2 works) · Climatology (2 works) · Evapotranspiration (2 works) · Geology (2 works)