郭永强,中国科学院成都山地所副研究员,长期从事古洪水重建与环境变化研究,聚焦青藏高原及周边高山峡谷区极端洪水事件调查,先后对黄河、长江、岷江、雅砻江、金沙江、澜沧江、怒江和印度河开展全新世古洪水调查采样工作,主持国家自然基金项目2项(岷江和雅砻江古洪水项目)、院所项目5项,参加重点基金项目3项(南水北调中线汉江上游古洪水、雅鲁藏布江古洪水和高山峡谷区溃决洪水风险),发表论文50余篇,其中第一作者发表论文20余篇(SCI论文15篇)。担任国际期刊客座编辑,组织全新世古洪水专辑“Holocene palaeofloods events: catastrophic outburst floods and extreme climate floods”,曾获陕西省优博论文,省部级奖3项,入选中国科学院青促会会员。
洪水地貌与环境变化
2019年陕西省优秀博士学位论文“我国季风区若干河流万年尺度稀遇洪水事件水文恢复研究”
2020年陕西高校科学技术一等奖(7/11)“汉江上游全新世古洪水水文学研究”
2021年教育部科技二等奖(6/7)“汉江上游(南水北调中线水源区)全新世古洪水气候水文学研究”
2022年中国科学院青年促进会会员“青藏高原及周边巨灾重建研究”
[1] Mao, P.N*., Guo, Y.Q*., Ge, Y.G., Liu, T., 2025. Extreme palaeofloods since the LGM in the Dadu River Grand Canyon, eastern Tibetan Plateau. Quaternary Science Reviews 368, 109547.
[2] Huang, X.L., Zhang, Y.Z., Guo, Y.Q*., Ge, Y.G., Mao, P.N., Liu, T., Wang, S., 2024. Outburst flood events since the Last Glacial Maximum in the Hutiao Gorge of Jinsha River: Geomorphological evidence from eddy gravel bars. Geomorphology 465,109415.
[3] Guo, Y.Q., Ge, Y.G., Mao, P.N., Dating of multiple debris flow stages in the Sandaoqiao gully, Kangding, Eastern Tibetan Plateau: implications for regional tectonic and climate changes. Environmental Earth Sciences 2024, 83: 108.
[4] Guo, Y.Q., Ge, Y.G., Mao, P.N., Liu, T., Reconstruction of mid-Holocene extreme flood events in the upper Minjiang River valley, eastern Tibetan Plateau, China. Palaeogeography, Palaeoclimatology, Palaeoecology 2023, 111517.
[5] Guo, Y.Q., Ge, Y.G., Mao, P.N., Liu, T., A comprehensive analysis of Holocene extraordinary flood events in the Langxian gorge of the Yarlung Tsangpo River valley. Science of the Total Environment 2023, 863: 160942.
[6] Guo, Y.Q., Ge, Y.G., Mao, P.N, Liu, T., Fu,X., Wu, S., Geomorphologic evidences and hydrologic reconstruction of Holocene catastrophic flood events in the Yarlung Tsangpo Grand Canyon, Eastern Himalaya. Journal of Hydrology 2023, 626: 130146.
[7] Mao, P.N., Guo, Y.Q*., Liu, T., Holocene extreme palaeofloods recorded by slackwater deposits along the Jiacha Gorge of the Yarlung Tsangpo River valley, southern Tibetan Plateau. Catena 2023, 231: 107360.
[8] Guo, Y.Q., Ge, Y.G., Cui, P., Chen, X.Q., Mao, P.N., Liu, T., Zhou, L., Early and mid-Holocene hydroclimate change recorded in tufa deposits in the Jiuzhaigou gully, eastern Tibetan Plateau. Catena 2021, 196: 104834.
[9] Guo, Y.Q., Huang, C.C., Zhou, Y.L., et al., Sedimentary record and luminescence chronology of palaeoflood events along the upper Hanjiang River valley, middle Yangtze River basin, China. Journal of Asian Earth Sciences 2018, 453: 37–47.
[10] Guo, Y.Q., Huang,, C.C., Pang, J.L., et al., Reconstruction palaeoflood hydrology using slackwater flow depth method in the Yanhe River valley, middle Yellow River basin, China. Journal of Hydrology 2017, 544: 156–171.
[11] Guo, Y.Q., Huang, C.C., Zhou, Y.L., et al., Extraordinary flood events and the response to monsoonal climatic change during the last 3000 years along the middle Yangtze River valley, China. Palaeogeography, Palaeoclimatology, Palaeoecology 2016, 462: 70–84.
[12] Guo, Y.Q., Huang, C.C., Pang, J.L et al., Palaeo-earthquake and palaeo-mudflow events at the Machangyuan Ruins in the Huangshui River valley, northeastern margin of the Tibetan Plateau. The Holocene 2016, 26(8): 1208–1224.
[13] Guo, Y.Q., Huang, C.C., Pang, J.L et al., Investigating extreme flood response to Holocene palaeoclimate in the Chinese monsoonal zone: A palaeoflood case study from the Hanjiang River. Geomorphology 2015, 238 :187–197.
[14] Guo, Y.Q., Huang, C.C., Pang, J.L et al., Concentration of heavy metals in the modern flood slackwater deposits along the upper Hanjiang River valley, China. Catena 2014, 116: 123–131.
[15] 郭永强, 葛永刚, 陈晓清, 刘维明, 毛沛妮, 刘涛. 高山峡谷区古洪水事件重建研究进展. 地学前缘, 2021, 28(02): 168–180.