Qiaoyun Xie
Dados Biográficos
| ID | 7992378 |
|---|---|
| NOME | Qiaoyun Xie |
| PRENOMES | Qiaoyun |
| SOBRENOME | Xie |
| ASSINATURA | XIE Q |
| AFILIAÇÕES | The University of Western Australia |
| ORCID | 0000-0002-1576-6610 |
| VERIFICADO | Sim |
| TOTAL DE OBRAS | 3 |
| TOTAL DE CITAÇÕES | 0 |
| TOTAL COMO AUTOR | 3 |
| TOTAL COMO EDITOR | 0 |
| PRIMEIRO ANO DE PUBLICAÇÃO | 2023 |
| ANO MAIS RECENTE DE PUBLICAÇÃO | 2025 |
| ÍNDICE H | 0 |
Subsurface constraints amplify vegetation stress during extreme heat and drought in a Mediterranean forest
Drought and extreme heat events are becoming more frequent and intense as the global climate warms, threatening forests worldwide. Subsurface conditions such as soil depth and groundwater availability can influence plant drought vulnerability. Yet, how subsurface factors interact with climate stress and shape forest vulnerability and die-off at landscape scales remains poorly understood. The record-breaking hot and dry 2023–2024 summer in southwe…
Biophysical response of a coastal woodland to extreme water deficit during a year of record-breaking heat
Global terrestrial and ocean surface temperatures continue to reach record levels, resulting in heat waves, drought, and prolonged heat stress experienced by vegetation in many regions. In 2023–2024, coastal terrestrial ecosystems in Western Australia were particularly affected, experiencing their driest and hottest summer since observations began in the early 1900s. Banksia woodlands are a threatened ecological community in this region that are …
Climate-driven land surface phenology advance is overestimated due to ignoring land cover changes
Global warming has led to earlier spring green-up dates (GUDs) in recent decades with significant consequences for global carbon and hydrologic cycles. In addition to changes in climate, land cover change (LCC), including interchanges between vegetation and non-vegetation, and among plants with different functional traits, may also affect GUD. Here, we analyzed how satellite-derived GUD from 1992 to 2020 was impacted by changes in temperature, pr…
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Climate-driven land surface phenology advance is overestimated due to ignoring land cover changes
Global warming has led to earlier spring green-up dates (GUDs) in recent decades with significant consequences for global carbon and hydrologic cycles. In addition to changes in climate, land cover change (LCC), including interchanges between vegetation and non-vegetation, and among plants with different functional traits, may also affect GUD. Here, we analyzed how satellite-derived GUD from 1992 to 2020 was impacted by changes in temperature, pr…
Subsurface constraints amplify vegetation stress during extreme heat and drought in a Mediterranean forest
Drought and extreme heat events are becoming more frequent and intense as the global climate warms, threatening forests worldwide. Subsurface conditions such as soil depth and groundwater availability can influence plant drought vulnerability. Yet, how subsurface factors interact with climate stress and shape forest vulnerability and die-off at landscape scales remains poorly understood. The record-breaking hot and dry 2023–2024 summer in southwe…
Biophysical response of a coastal woodland to extreme water deficit during a year of record-breaking heat
Global terrestrial and ocean surface temperatures continue to reach record levels, resulting in heat waves, drought, and prolonged heat stress experienced by vegetation in many regions. In 2023–2024, coastal terrestrial ecosystems in Western Australia were particularly affected, experiencing their driest and hottest summer since observations began in the early 1900s. Banksia woodlands are a threatened ecological community in this region that are …
Climate change (3 obras) · Climate change and permafrost (2 obras) · Climatology (2 obras) · Ecology (2 obras) · Environmental Science (2 obras) · Geology (2 obras) · Vegetation (pathology (2 obras) · Biology (1 obras) · Evapotranspiration (1 obras) · Geography (1 obras)