陳修治,中山大學大氣科學學院教授,博士生導師。入選國家級高層次人才計畫、廣東省特支計畫和珠江科技新星。主要從事氣候變化與森林生態系統研究,以第一或通訊作者在《Nature Climate Change》、《The Innovation》、《Nature Communications》、《Global Change Biology》、《Earth System Science Data》、《Remote Sensing of Environment》、《Environment International》等刊物發表SCI多篇,科研成果獲廣東省自然科學一等獎、廣東省科學技術二等獎等,任《The Innovation》、《生態環境學報》、《遙感技術與套用》等刊物青年編委。
基本介紹
研究領域,教育背景,工作經歷,獲獎記錄,代表性論著,講授課程,
研究領域
氣候變化與森林生態系統。
研究方向:熱帶森林物候及碳循環、森林生態水文、森林小氣候、遙感及建模。
團隊主頁:https://mars.chenxiuzhi.com
教育背景
2004/09 - 2008/07,中南大學,地理學地理信息系統專業,學士(保送研究生);
2008/09 - 2013/07,中國科學院大學,環境科學,博士(碩博連讀)。
工作經歷
2013/07 – 2015/06,中國科學院華南植物園,生態中心,助理研究員;
2015/07 – 2016/06,中國科學院華南植物園,生態中心,陳煥鏞副研究員;
2016/07 – 2017/06,中國科學院華南植物園,生態中心,副研究員;
2017/07 – 2019/06,法國氣候與環境科學實驗室(Laboratoire des Sciences du Climat et de l'Environnement),博士後(合作導師:Philippe Ciais);
2019/07 – 2022/03,中山大學,大氣科學學院,副教授;
2022/04 – 至今,中山大學,大氣科學學院,教授。
獲獎記錄
2014年,獲廣東省科學技術獎二等獎;
2016年,入選“珠江科技新星”人才計畫;
2016年,入選廣東特支計畫 “青年拔尖”人才;
2017年,獲中科院廣州分院優秀青年科技工作者;
2021年,獲廣東省自然科學一等獎;
2022年,入選國家農業部“神農英才”計畫;
2022年,入選國家級高層次青年人才計畫。
代表性論著
Su, Y., Zhang,C., Ciais, P., Zeng, Z., Cescatti, A., Shang, J., Chen, J.M., Liu, J.,Wang, Y.-P., Yuan, W., Peng, S., Lee, X., Zhu, Z., Fan, L., Liu, X., Liu,L., Lafortezza, R., Li, Y., Ren, J., Yang, X., & Chen, X*. (2023).Asymmetric influence of forest cover gain and loss on land surfacetemperature. Nature Climate Change, 13, 823-831.
Yang, X. (學生), Chen, X.*,Ren, J., Yuan, W., Liu, L., Liu, J., Chen, D., Xiao, Y., Song, Q., Du, Y., Wu,S., Fan, L., Dai, X., Wang, Y., & Su, Y. (2023). A grid dataset of leafage-dependent LAI seasonality product (LAD-LAI) over tropical and subtropical evergreen broadleaved forests. (2023). Earth System Science Data,15, 2601-2622.
Chen,Y. (學生), Chen,X.*, Xue, M., Yang, C., Zheng, W., Cao, J., Yan, W., & Yuan, W. (2023).Revisiting the hydrological basis of the Budyko framework with the hydrologically similar groups principle. Hydrology and Earth SystemSciences, 27, 1929-1943.
Liu, L. (學生), Chen, X.*,Ciais, P., Yuan, W., Maignan, F., Wu, J., Piao, S., Wang, Y., Wigneron, J.,Fan, L., Gentine, P., Yang, X., Gong, F., Liu, H., Wang, C., Tang, X., Yang,H., Ye, Q., He, B., Shang, J. and Su, Y. (2022). Tropical tall forests are more sensitive and vulnerable to drought than short forests. Global Change Biology, 28(4), 1583-1595.
Gong, F. (學生), Chen, X.*, Yuan,W., Su, Y., Yang, X., Liu, L., Sun, Q., Wu, J., Dai, Y., Shang, J. (2022).Partitioning of three phenology rhythms in American tropical and subtropical forests using remotely sensed solar-induced chlorophyll fluorescence and field litterfall observations. International Journal of Applied Earth Observation and Geoinformation, 107,102698.
Liu, L. (學生), Gong, F., Chen,X.*, Su, Y., Fan, L., Wu, S., Yang, X., Zhang, J., Yuan, W., Ciais, P.,Zhou, C. (2022). Bidirectional drought‐related canopydynamics across pantropical forests: a satellite‐basedstatistical analysis. Remote Sensing in Ecology and Conservation,72-91.
Yang, X. (學生), Wu, J., Chen,X.*, Ciais, P., Maignan, F., Yuan, W., Piao, S., Yang, S., Gong, F., Su, Y., Dai, Y., Liu, L., Zhang, H., Bonal, D., Liu, H., Chen, G., Lu, H., Wu, S., Fan, L., Gentine, P., Wright, S. J. (2021). A comprehensive framework for seasonal controls of leaf abscission and productivity in evergreen, broadleaved tropical and subtropical forests. The Innovation, 2(4), 100154.
Li, Q. (學生), Chen, X. *, Yuan, W., Lu, H., Shen, R., Wu, S., Gong, Fa., Dai, Y., Sun, Q., Zhang, C., Su,Y. (2021) Remote sensing of seasonal climatic constraints on leaf phenology across pantropical evergreen forest biome. Earth's Future, 9(9),e2021EF002160
Chen, X.*, Ciais, P., Maignan, F., Zhang, Y., Bastos, A., Liu, L., Bacour, C., Fan, L., Gentine, P., Goll, D., Green, J., Kim, H., Li, L., Liu, Y., Peng, S., Tang, H., Viovy, N., Wigneron, J., Wu, J., Yuan, W., Zhang, H. (2021). Vapor pressure deficit and sunlight explain seasonality of leaf phenology and photosynthesis across Amazonian evergreen broadleaved forest. Global Biogeochemical Cycles, 35, e2020GB006893.
Chen, X., Liu, L., Su, Y.*, Yuan, W., Liu, X., Liu, Z., Zhou, G. (2021). Quantitative association between the water yield impacts of forest cover changes and the biophysical effects of forest cover on temperatures. Journal of Hydrology, 600. 126529.
Su, Y., Zhang, C., Chen, X.*, Liu, L., Ciais, P., Peng, J., Wu, S., Wu, J., Shang,J., Wang, Y., Yuan, W., Yang, Y., Wu, Z., Lafortezza, R. (2021). Aerodynamic resistance and Bowen ratio explain the biophysical effects of forest cover on understory air and soil temperatures at the global scale. Agricultural and Forest Meteorology, 308, 108615.
Chen, X*., Maignan, F., Viovy, N., Goll, D., Wu, J., Bastos, A.,Yue, C., Peng, S., Conceição, A., Liu, L., Ciais, P. (2020) Novel representation of leaf phenology improves simulation of Amazonian evergreen forest photosynthesis in a land surface model. Journal of Advances inModeling Earth Systems, 12(1), e2018MS001565.
Su, Y., Liu, L., Liao, J., Wu, J., Ciais, P., Liao, J. He, X.,Liu, X., Chen, X.*, Yuan, W. & Zhou, G. (2020). Urban vegetation cooling/warming on local air temperature: a synthetic analysis of global site observations. Agricultural and Forest Meteorology, 280, 107765.
Su, Y., Liu,L., Wu, J., Chen, X.*, Shang, J., Ciais, P., Zhou., G., Lafortezza, R., Wang, Y., Yuan, W., Zhang, H., Huang, G., Huang, N. (2019).Quantifying the biophysical effects of forests on local air temperature using a novel three-layered energy balance model. Environment International, 132,105080.
Liu, L. (學生), Liao, J., Chen,X.*, Zhou, G., Su, Y., Xiang, Z., & Xiong, X. (2017). The Microwave Temperature Vegetation Drought Index (MTVDI) based on AMSR-Ebrightness temperatures for long-term drought assessment across China (2003–2010). Remote Sensing of Environment, 199, 302-320.
·Chen, X.,Su, Y., Liao, J., Shang, J., Dong, T., Wang, C., Liu, W., Zhou, G.*, & Liu,L. (2016). Detecting significant decreasing trends of land surface soil moisture in eastern China during the past three decades (1979–2010). Journal of Geophysical Research: Atmospheres, 121(10), 5177-5192.
Chen, X., Wei, X., Sun, G., Zhou, P., &Zhou, G.* (2016). Correspondence: Reply to/Space-time asymmetry undermines water yield assessment/'. Nature Communications, 7, 11604.
Zhou, G.*, Wei,X.#, Chen, X.#, Zhou, P., Liu, X., Xiao, Y., Su, G., Scott, D.F.,Zhou, S., Han, L. & Su, Y. (2015). Global pattern for the effect of climate and land cover on water yield. Nature Communications, 6, 5918.
Chen, X., Liu, X., Zhou, G.*, Han, L., Liu, W.,& Liao, J. (2015). 50-year evapotranspiration declining and potential causations in subtropical Guangdong province, southern China. Catena,128, 185-194.
Chen, X. Z.*, Li, Y., Su, Y. X., Han, L. S., Liao, J. S., & Yang,S. B. (2014). Mapping global surface roughness using AMSR-E passive microwave remote sensing. Geoderma,235, 308-315.
Chen, X. Z., Chen, S. S., Zhong, R. F.*, Su, Y. X., Liao, J. S., Li, D., Han, L., Li, Y. & Li, X. (2012). A semi-empirical inversion model for assessing surface soil moisture using AMSR-E brightness temperatures. Journal of Hydrology, 456, 1-11.
講授課程
《地球系統科學概論》、《氣候與陸地生態系統》、《地理空間信息技術》、《計算機與程式設計》等

