求真百科歡迎當事人提供第一手真實資料,洗刷冤屈,終結網路霸凌。

變更

前往: 導覽搜尋

殷水清

移除 118 位元組, 2 年前
学术成果
* [1] Yue T., Yin S.*, Xie Y., Yu B., Liu B., 2022, Rainfall erosivity mapping over mainland China based on high-density hourly rainfall records, Earth System Science Data, 14, 665–682,
* [2] Wang W., Yin S.*, Gao G., Papalexiou S.M., Wang Z., 2022, Increasing trends in rainfall erosivity in the Yellow River basin from 1971 to 2020, Journal of Hydrology, 610: 127851.
* [3] Fan C., Yin S.*, Chen D., 2021, Spatial correlations of daily precipitation over mainland China. International Journal of Climatology, 41(14), 6350-6365. https://doi.org/10.1002/joc.7199
* [4] Zou W., Yin S.*, Wang W., 2021, Spatial interpolation of the extreme hourly precipitation at different return levels in the Haihe River basin, Journal of Hydrology, 598: 126273.
* [5] Wang W., Yin S.*, Yu B., Wang S., 2021, CLIGEN parameter regionalization for mainland China. Earth System Science Data, 13, 2945-2962. https://doi.org/10.5194/essd-13-2945-2021
* [6] Borrelli P., Alewell C., Alvarez P., et al., 2021, Soil erosion modelling: A global review and statistical analysis. Science of the Total Environment, 780: 146494.
* [7] Bezak N., Mikos M., Borrelli P., et al., 2021, Soil erosion modelling: A bibliometric analysis. Environmental Research, 197: 111087. DOI: 10.1016/J.ENVRES.2021.111087
* [8] Yin S., Chen, D., 2020. Weather generators. In Oxford Research Encyclopedias of Climate Science. Oxford University Press. doi: https://doi.org/10.1093/acrefore/9780190228620.013.768
* [9] Yue T., Xie Y., Yin S.*, Yu B., Miao C., Wang W., 2020, Effect of time resolution of rainfall measurements on the erosivity factor in the USLE in China, International Soil and Water Conservation Research, 8(4): 373-382. DOI information: 10.1016/j.iswcr.2020.06.001.
* [10] Liu B., Xie Y., Li Z., Liang Y., Zhang W., Fu S., Yin S., Wei X., Zhang K., Wang Z., Liu Y., Zhao Y., Guo Q., 2020, The assessment of soil loss by water erosion in China, International Soil and Water Conservation Research, 8(4): 430-439. DOI: 10.1016/j.iswcr.2020.07.002.
* [32] 高歌*,殷水清,陈涛,黄大鹏,王文婷,2022, 长江流域降雨侵蚀力时空变化及成因分析. 农业工程学报,38(3): 84-92.
* [33] 秦大河, 效存德*, 丁明虎, 王飞腾,朱志强,殷水清,任贾文,2022, 服务冬奥、支撑发展:冰冻圈科学的延拓. [[中国科学院院刊]], 37(3): 395-402.
* [34] 高歌*,韩振宇,殷水清,黄大鹏,王文婷, 2021, 黄河流域1961~2017年 [[ 降雨侵蚀力 ]] 特征与 [[ 未来变化预估]]. [[ 应用基础与工程科学学报]], 29(3): 575-590.* [35] 殷水清*, 王文婷, 2020, 土壤侵蚀研究中降雨过程随机模拟综述. 地理 [[ 科学进展]], 39(10): 1747-1757.
* [36] 谢云, 张汝正, 殷水清*, 田丹丹, 高歌,2020, 1961—2010年全球变暖背景下中国空气湿度长期变化特征. 水科学进展, 31(5): 674-684. doi: 10.14042/j.cnki.32.1309.2020.05.004.
* [37] 殷水清*, 薛筱婵, 岳天雨, 谢云, 高歌, 2019, 中国降雨侵蚀力的时空分布及重现期研究. 农业工程学报, 35(9): 105-113. DOI:10.11975/j.issn.1002-6819.2019.09.013.
* [54] 殷水清, 谢云*,2005, 黄土高原降雨侵蚀力时间分布. 水土保持通报,25(4): 29-33.
* [55] 殷水清, 谢云*,2005, 黄土高原地区中小流域日降雨空间分布特征. 北京师范大学学报(自然科学版),41(1): 89-91.
*  
==获奖情况==
2018年, 中国水土保持学会科技进步奖, 一等奖(14/15)
19,625
次編輯