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{| class="wikitable" style="float:right; margin: -10px 0px 10px 20px; text-align:left" |<center>''' 杨扬 '''<br><img src=" https://geot.bnu.edu.cn/Public/upload/2021/01/14/5fffb6c2cb6ec.jpg " width="180"></center><small>[https://geot.bnu.edu.cn/Public/htm/news/5/256.html 北京师范大学地理科学学部]</small> |} '''杨扬''',女,北京师范大学地理科学学部副教授。 ==人物简历== === 教育经历 === 2010.08-2014.03 美国肯塔基大学植物与土壤科学系,土壤学,博士 2007.09-2010.06 北京师范大学地理学与遥感科学学院,自然地理学,硕士 2003.09-2007.06 北京师范大学地理学与遥感科学学院,地理科学,学士 === 工作经历 === 2021.09至今 北京师范大学地理科学学部,副教授 2016.11-2021.09 北京师范大学地理科学学部,讲师 2014.11-2016.11 北京师范大学地理学与遥感科学学院,讲师 2014.04-2014.08 美国肯塔基大学植物与土壤科学系,博士后 ==学术兼职== 2016.02至今 Soil & Tillage Research 编委 ==研究方向== [[自然地理学]] ==科研项目== 国家自然科学基金重点项目,黄土高原植被恢复影响切沟侵蚀的动力机制与模拟(42130701),专题主持,2022-2026 国家重点研发计划课题,侵蚀退化农田生态生产功能重建机制和提升关键技术与示范(2021YFD1500803),专题主持,2021-2024 云南省烟草公司科技计划项目,烤烟养分调控与烘烤特性相关性研究(横向),专题主持,2020-2022 国家自然科学基金青年科学基金项目,黄土高原小流域退耕还林(草)对切沟侵蚀的影响及其演变(41601277),主持,2017-2019 地表过程与资源生态国家重点实验室自由探索项目,基于SfM摄影测量法的黄土高原水蚀风蚀交错区沟蚀特征研究(2017-ZY-09),2017-2019 国家自然科学基金中英国际(地区)合作与交流项目,黄土高原关键带植被—侵蚀相互作用及其对碳氮循环的影响(41571130082),参与,2016-2019 北京师范大学青年教师基金项目,坡面养分流失过程的室内模拟试验研究(2014NT04),2015-2016 ==学术成果== === 期刊论文 === He, T., Yang, Y.*, Shi, Y., Liang, X., Fu, S., Xie, G., Liu, B. Liu. Y., 2022. Quantifying spatial distribution of interrill and rill erosion in a loess at different slopes using structure from motion (SfM) photogrammetry. International Soil and Water Conservation Research. doi:10.1016/j.iswcr.2022.01.001. In Press. Yang, Y.*, Wu, X., He, T., Wang, Y., Wendroth, O., Chen, X., Liu, B., Zhang, G., 2022. Factors controlling saturated hydraulic conductivity along a typical black soil slope. Soil & Tillage Research 220:105391. doi:10.1016/j.still.2022.105391. Wu, X., Yang, Y.*, He, T., Wang, Y., Wendroth, O., Liu, B., 2022. Mechanical sowing alters slope-scale spatial variability of saturated hydraulic conductivity in the black soil region of Northeast China. Catena 212:106115. doi:10.1016/j.catena.2022.106115. Yang, Y., Shi, Y., Liang, X., Huang, T., Fu, S.*, Liu, B. 2021. Evaluation of structure from motion (SfM) photogrammetry on the measurement of rill and interrill erosion in a typical loess. Geomorphology 385:107734. doi:10.1016/j.geomorph.2021.107734. Bai, X., Yang, Y.*, Huang, T., Liu, B., 2021. Applicability of laser diffraction method for soil particle size distribution analysis of five soil orders in the water erosion region of China. Journal of Soil and Water Conservation 76(4):303-316. Yang, Y.*, Huang, T., Shi, Y., Wendroth, O., Liu, B., 2021. Comparing the performance of an autoregressive state-space approach to the linear regression and artificial neural network for streamflow estimation. Journal of Environmental Informatics 37:36-48. Yang, Y.*, Wendroth, O., Kreba, S., Liu, B., 2019. Estimating near-saturated conductivity based on its scale-dependent relationships with soil properties. Vadose Zone Journal 18:180217. doi:10.2136/vzj2018.12.0217. Yang, Y.*, Jia, X., Wendroth, O., Liu, B., Shi, Y., Huang, T., Bai, X., 2019. Noise-assisted multivariate empirical mode decomposition of saturated hydraulic conductivity along a south-north transect across the Loess Plateau of China. Soil Science Society of America Journal 83:311-323. Yang, Y.*, Wang, L., Wendroth, O., Liu, B., Cheng, C., Huang, T., Shi, Y., 2019. Is the laser diffraction method reliable for soil particle size distribution analysis? Soil Science Society of America Journal 83:276-287. Yang, Y.*, Jia, X., Wendroth, O., Liu, B., 2018. Estimating saturated hydraulic conductivity along a south-north transect in the Loess Plateau of China. Soil Science Society of America Journal 82:1033-1045. Jia, X., Yang, Y., Zhang, C., Shao, M., Huang, L.*, 2017. A state-space analysis of soil organic carbon in China’s Loess Plateau. Land Degradation & Development 28:983-993. Wang, Y., Tan, S., Liu, B.*, Yang, Y., 2017. Estimating rainfall erosivity by incorporating seasonal variations in parameters into the Richardson model. Journal of Geographical Sciences 27:275-296. Liu, H., Yang, Y., Zhang, K.*, Sun, C., 2017. Soil erosion as affected by freeze-thaw regime and initial soil moisture content. Soil Science Society of America Journal 81:459-467. Yang, Y.*, Wendroth, O., Walton, R.J., 2016. Temporal dynamics and stability of spatial soil matric potential in two land use systems. Vadose Zone Journal 15(8). doi:10.2136/vzj2015.12.0157. Hao, Y., Yang, Y., Liu, B.*, Liu, Y., Gao, X., Guo, Q., 2016. Size characteristics ofsediments from three soils in China under natural rainfall. Journal of Soils and Sediments 16:2153-2165. Schwen, A.*, Backus J., Yang, Y., Wendroth, O., 2014. Characterizing land use impact onmulti-tracer displacement and soil structure. Journal of Hydrology 519:1752-1768. Yang, Y.*, Wendroth, O., Walton, R.J., 2014. Field-scale water and bromide transport during and after simulated rain. Soil Science Society of America Journal 78:1224-1238. Wendroth, O.*, Yang, Y., Timm, L.C., 2014. State-space analysis in soil physics.In: Teixeira, W.G., Ceddia, M.B., Ottoni, M.V., Donnagema, G.K., editors, Application of soil physics in environmentalanalyses: Measuring, modelling and data integration. Springer International Publishing, New York. pp. 53-74. Yang, Y.*, Wendroth, O., 2014. State-space approach to analyze field-scale bromide leaching. Geoderma 217-218:161-172. Yang, Y., Ye, Z., Liu, B.*, Zeng, X., Fu, S., Lu, B., 2014. Nitrogen enrichment in runoff sediments as affected by soil texture in Beijing mountain area. Environmental Monitoring and Assessment 186:971-978. Yang, Y.*, Wendroth, O., Walton, R.J.. 2013. Field-scale bromide leaching as affected by land use and rain characteristics. Soil Science Society of America Journal 77:1157-1167. Schwen, A.*, Yang, Y., Wendroth, O., 2013. State-spacemodels describe the spatial variability of bromide leaching controlled by landuse, irrigation and pedologic characteristics. Vadose Zone Journal doi:10.2136/vzj2012.0196. Schwen, A.*, Yang, Y., Walton, R.J., Wendroth, O., 2012. A new experimental design reveals the impacts of land useand irrigation characteristics on bromide leaching. Vadose Zone Journal 11 doi:10.2136/vzj2012.0077. 张光辉*,杨扬,刘瑛娜,王志强.2022.东北黑土区土壤侵蚀研究进展与展望.水土保持学报,36(2):1-12. 温艳茹,余强毅,杨扬,张斌,吴文斌*.2021.黑土小流域沟道分布遥感监测及主控因素研究.农业资源与环境学报,38(6):1074-1083. 白雪,杨扬*,黄婷婷,吴欣桐,何涛,王丽娟,刘宝元.2021.激光衍射法与湿筛—吸管法测定中国3种典型土壤粒径分布的差异分析.水土保持研究,28(4):84-90. 何涛,史扬子,杨扬*,黄婷婷,白雪,刘宝元,刘瑛娜.2021.切沟侵蚀测量方法研究进展.中国水土保持科学,19(2):151-158. 黄婷婷,杨扬*,史扬子,曹琦,冯博,刘宝元,刘瑛娜.2021.基于WorldView-2影像估算黄土高原六道沟小流域退耕还林(草)后的切沟发育速率.中国水土保持科学,19(1):1-10. 史扬子,黄婷婷,罗建勇,杨扬*,刘宝元.2020.SfM摄影测量法测定切沟的精度评价.水土保持研究,27(1):39-46. 黄婷婷,史扬子,曹琦,王丽娟,杨扬*,刘宝元.2020.黄土高原六道沟小流域近30年来土壤侵蚀变化评价.中国水土保持科学,18(1):8-17. 郝燕芳,刘宝元*,杨扬,刘瑛娜,王友胜.2018.中国5种典型土壤的侵蚀泥沙粒径分布特征.水土保持学报,32(2):150-159. 李依珊,尹斌,谢云*,殷水清,刘雨鑫,章文波,殷兵,杨扬,段兴武.2018.岩溶区土壤侵蚀强度评价方法.中国水土保持科学,16(2):17-23. 刘宝元*,杨扬,陆绍娟.2018.几个常用土壤侵蚀术语辨析及其生产实践意义.中国水土保持科学,16(1):9-16. 王丽娟,杨扬*,郑娟娟,刘瑛娜,郭乾坤,王大安,刘宝元.2017.施肥对北京山区农田地表氮磷流失的影响——以密云水库流域为例.中国水土保持科学,15(1):97-104. 张怡,丁迎盈,王大安,谭诗,杨扬*,刘宝元.2015.坡度对侵蚀产沙及其粒径分布的影响.水土保持学报,29(6):25-29. 杨扬*,刘雨鑫,金平伟,向家平,谢云.2015.坡面水土保持措施效益评价——以贵州省冗雷河小流域为例.中国水土保持科学,13(5):64-71. 刘瑛娜,刘刚,刘宝元,高晓飞,杨扬,王大安,成聪聪.2015.翻斗流量计测量径流小区流量的精度与校正.中国水土保持,(10):44-46. 焦剑*,郎从,杨扬,郑娟娟,杨俊杰.2014.北京半城子水库水体营养物质表观沉降速率.生态学报,34(14):4107-4115. 焦剑*,朱少波,杨扬,郎从,张天宇.2013.密云水库上游流域水体营养物质现状及来源分析.水土保持通报,33(4):12-17. 焦剑,刘宝元*,杜鹏飞,杨扬,段兴武,郎从.2013.密云水库上游流域水体营养物质季节变化特征分析.水土保持学报,27(1):167-171. === 著作章节 === Wendroth, O., Yang, Y., Timm, L.C. 2014. State-space analysis in soil physics. In: Teixeira, W.G., Ceddia, M.B., Ottoni, M.V., Donnagema, G.K. (Eds.), Application of soil physics in environmental analyses: measuring, modelling and data integration. Springer, New York. p.53-74. 刘宝元,杨扬.2012.[[土壤侵蚀]].见:伍永秋,[[鲁瑞洁]],刘宝元,自然地理学.北京:[[北京师范大学出版社]].p.387-409. ==获奖情况== 2021 北京师范大学第十七届青年教师教学基本功比赛 研究生教学理工科组二等奖 2018 北京师范大学优秀辅导员(班级获北京市先进班集体) 2017 北京师范大学优秀辅导员 2013 美国肯塔基大学植物与土壤科学系 Doyle E. Peaslee Award 2013 [[美国肯塔基大学]]植物与土壤科学系1st Place at the First Graduate Student Mini-Symposium<ref>[https://geo.bnu.edu.cn/ 北京师范大学地理科学学部]</ref> ==参考资料== {{reflist}} [[Category:教授]]
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