Jinlin Zha
Biographic Data
| ID | 7996824 |
|---|---|
| NAME | Jinlin Zha |
| GIVEN NAMES | Jinlin |
| FAMILY NAME | Zha |
| SIGNATURE | ZHA J |
| AFFILIATIONS | Yunnan University |
| ORCID | 0000-0001-8292-7464 |
| VERIFIED | Yes |
| TOTAL WORKS | 3 |
| TOTAL CITATIONS | 0 |
| AUTHOR COUNT | 3 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2021 |
| LATEST PUBLICATION YEAR | 2021 |
| H-INDEX | 0 |
Projected changes in global terrestrial near-surface wind speed in 1.5 °C–4.0 °C global warming levels
Understanding future changes in global terrestrial near-surface wind speed (NSWS) in specific global warming level (GWL) is crucial for climate change adaption. Previous studies have projected the NSWS changes; however, the changes of NSWS with different GWLs have yet to be studied. In this paper, we employ the Max Planck Institute Earth System Model large ensembles to evaluate the contributions of different GWLs to the NSWS changes. The results …
Estimating centennial-scale changes in global terrestrial near-surface wind speed based on CMIP6 GCMs
A global terrestrial stilling in recent decades has been reported, but the centennial-scale changes in global terrestrial near-surface wind speed (NSWS) and the potential contributing factors are yet to be revealed. Consequently, in this study, centennial-scale changes in global terrestrial NSWS are investigated based on Coupled Model Intercomparison Project phase 6 datasets, and that the potential factors causing those changes are detected. The …
Slowdown and reversal of terrestrial near-surface wind speed and its future changes over eastern China
A recovery of near-surface wind speed (SWS) in the last decade has been reported over China; nevertheless, the contributions of large-scale ocean-atmosphere circulations (LOACs) to the SWS changes are rarely investigated. In this study, the turning point (TP) of the terrestrial stilling was validated over eastern China for 1979–2017. Furthermore, a forward stepwise regression algorithm was used to assess the contribution of LOACs to SWS changes. …
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Projected changes in global terrestrial near-surface wind speed in 1.5 °C–4.0 °C global warming levels
Understanding future changes in global terrestrial near-surface wind speed (NSWS) in specific global warming level (GWL) is crucial for climate change adaption. Previous studies have projected the NSWS changes; however, the changes of NSWS with different GWLs have yet to be studied. In this paper, we employ the Max Planck Institute Earth System Model large ensembles to evaluate the contributions of different GWLs to the NSWS changes. The results …
Estimating centennial-scale changes in global terrestrial near-surface wind speed based on CMIP6 GCMs
A global terrestrial stilling in recent decades has been reported, but the centennial-scale changes in global terrestrial near-surface wind speed (NSWS) and the potential contributing factors are yet to be revealed. Consequently, in this study, centennial-scale changes in global terrestrial NSWS are investigated based on Coupled Model Intercomparison Project phase 6 datasets, and that the potential factors causing those changes are detected. The …
Slowdown and reversal of terrestrial near-surface wind speed and its future changes over eastern China
A recovery of near-surface wind speed (SWS) in the last decade has been reported over China; nevertheless, the contributions of large-scale ocean-atmosphere circulations (LOACs) to the SWS changes are rarely investigated. In this study, the turning point (TP) of the terrestrial stilling was validated over eastern China for 1979–2017. Furthermore, a forward stepwise regression algorithm was used to assess the contribution of LOACs to SWS changes. …
Atmospheric sciences (3 works) · Climate variability and models (3 works) · Climatology (3 works) · Environmental Science (3 works) · Geography (3 works) · Geology (3 works) · Climate change (2 works) · Latitude (2 works) · Northern Hemisphere (2 works) · Oceanography (2 works)