田丰,男,副研究员。从事热带海洋气候-生物相互作用及ENSO数值模拟研究。通过自主研发热带太平洋大气-海洋物理-生物地球化学全耦合模式系统,创新性地引入多尺度生物过程影响气候研究范式,提出"海气耦合强度决定生物反馈方向"新理论,解决了长期存在的"叶绿素-海温"反馈争议。揭示出降水及海洋生态过程在维持多年拉尼娜中的关键作用。在国际知名期刊Nature Communication, Communication earth and environment, Journal of Climate, GRL等发表论文三十篇(第一作者论文16篇)。主持国家自然科学基金面上、青年等项目四项。获得2019年中国科学院院长特别奖、2020年中国科学院优秀博士学位论文、2021年度中国科学院海洋研究所优秀博士后出站奖励、2023-2024年度Wiley高被引论文奖、2024年度英国物理学会期刊ERL杰出审稿人奖。
一、研究领域
多圈层耦合模式、海洋多尺度动力过程-生物过程跨学科交叉研究
二、招生专业及方向
海洋遥感与数值模拟、预测方法
三、研究室及联系方式
海洋环流与波动重点实验室,田丰,tianfeng@qdio.ac.cn
四、承担的主要科研项目
1. 国家自然科学基金面上项目,ENSO多样性与热带太平洋叶绿素年际变率相互作用研究(项目编号:42476010),2025/01-2028/12,主持
2. 国家自然科学基金青年科学基金项目,热带太平洋海气耦合在叶绿素影响气候中的作用及其数值模拟研究(项目编号:42006001),2021/01-2023/12,主持
3. 崂山实验室科技创新项目:多圈层/多尺度海气耦合及对年际气候变率的影响,2023-2026,研究骨干
五、研究成果及奖励
2020 中国科学院优秀博士学位论文
2019 中国科学院院长特别奖
2021 中国科学院海洋研究所优秀博士后出站奖励
2024 Wiley JGR-Ocean Top Cited Paper
2024 英国物理学会IOP/ERL杰出审稿人奖
六、代表性论文及著作
1. Tian, F.*, Zhang, R.-H.*, Wang, X. & Liu, C. Phytoplankton-induced radiation effects reshape the evolution of multi-year La Niña. Commun. Earth Environ. https://doi.org/10.1038/s43247-026-03680-z (2026) doi:10.1038/s43247-026-03680-z.
2. Tian, F.*, Zhang, R.-H.*, Liu, C.* & Guan, C. Rainfall sustains multiyear La Niña. Nature. Communications. 17, 1744 (2026).
3. Tian, F. * & Zhang, R.-H * Increased Shortwave Radiation Dampens Summertime SST Tendency in Mid‐Latitude Oceans Under Future Warming Scenarios. Geophys. Res. Lett. 52, 1–13 (2025).
4. Tian, F.*, Zhang, R.-H. * & Wang, X. Multiyear La Niña Impacts on Surface Chlorophyll in the Equatorial Pacific: Insights from Ocean Dynamics. J. Clim. 38, 3825–3843 (2025).
5. Tian, F.* & Zhang, R.-H. Emerging Hotspots of Surface Chlorophyll Trend in the Tropical Oceans. J. Geophys. Res. Oceans 129, 1–23 (2024).
6. Tian, F.* & Zhang, R.-H.* Persistent warming and anomalous biogeochemical signatures observed in the Northern Tropical Pacific Ocean during 2013–2020. Clim. Dyn. 62, 5927–5947 (2024).
7. Tian, F. & Zhang, R.-H.* Increasing Shortwave Penetration Through the Bottom of the Oceanic Mixed Layer in a Warmer Climate. J. Geophys. Res. Oceans 128, (2023).
8. Tian, F. & Zhang, R.-H. * Decreasing surface chlorophyll in the tropical ocean as an indicator of anthropogenic greenhouse effect during 1998–2020. Environ. Res. Lett. 18, 084019 (2023).
9. Tian, F., Zhang, R.-H. *, Wang, X. & Zhi, H. Rectified Effects of Interannual Chlorophyll Variability on the Tropical Pacific Climate Revealed by a Hybrid Coupled Physics‐Biology Model. J. Geophys. Res. Oceans 126, (2021).
10. Tian, F., Zhang, R.-H. * & Wang, X. Indian Ocean warming as a potential trigger for super phytoplankton blooms in the eastern equatorial Pacific from El Niño to La Niña transitions. Environ. Res. Lett. 16, 054040 (2021).
11. Guan, C.# Tian, F#, ... Wang, F*. Zonal Structure of Tropical Pacific Surface Salinity Anomalies Affects ENSO Intensity and Asymmetry. Geophys. Res. Lett. 49, (2022).
12. Tian, F., Zhang, R.-H.* & Wang, X. Coupling ocean–atmosphere intensity determines ocean chlorophyll-induced SST change in the tropical Pacific. Clim. Dyn. 56, 3775–3795 (2021).
13. Tian, F., Zhang, R.-H.* & Wang, X. Effects on Ocean Biology Induced by El Niño‐Accompanied Positive Freshwater Flux Anomalies in the Tropical Pacific. J. Geophys. Res. Oceans 125, 0–2 (2020).
14. Tian, F., Zhang, R.-H.* & Wang, X. Factors affecting interdecadal variability of air–sea CO2 fluxes in the tropical Pacific, revealed by an ocean physical–biogeochemical model. Clim. Dyn. 53, 3985–4004 (2019).
15. Tian, F., Zhang, R.-H. * & Wang, X. A Positive Feedback Onto ENSO Due to Tropical Instability Wave (TIW)‐Induced Chlorophyll Effects in the Pacific. Geophys. Res. Lett. 46, 889–897 (2019).
16. Tian, F., Zhang, R.-H. * & Wang, X. A Coupled Ocean Physics‐Biology Modeling Study on Tropical Instability Wave‐Induced Chlorophyll Impacts in the Pacific. J. Geophys. Res. Oceans 123, 5160–5179 (2018).
完整论文详情请见:
ResearchGate (https://www.researchgate.net/profile/Feng-Tian-2?ev=hdr_xprf )
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