代表論著:
代表性著作
[1]坡面細(xì)溝侵蝕過程量化研究. 北京: 科學(xué)出版社, 2020
[2]WEPP模型及其在黃土高原的應(yīng)用評(píng)價(jià). 北京: 科學(xué)出版社, 2009.
[3]溝蝕演變過程與侵蝕產(chǎn)沙. 北京: 科學(xué)出版社, 2009.
[4]水蝕過程與預(yù)報(bào)模型. 北京: 科學(xué)出版社, 2008.
[5]中國(guó)土壤侵蝕與環(huán)境, 北京: 科學(xué)出版社, 2005.
[6]黃土坡面土壤侵蝕過程及其模擬, 西安: 陜西人民出版社, 2001.
[7]Overland Flow and Surface Runoff (edited by Tommy S.W. WANG), New York: NOVA Science Publishers, Inc. 2012(撰寫第五章內(nèi)容)
[8]Restoration and development of degraded Loess Plateau. Springer, 2014.(撰寫第六章)
[9]黃土高原生態(tài)建設(shè)環(huán)境效應(yīng)研究, 北京:氣象出版社, 2010(撰寫第五章內(nèi)容)
代表性論文
[1]Zheng Fenli, Chi-hua Huang and L.D. Norton. 2000. Vertical hydraulic gradient and run-on water and sediment effects on erosion processes and sediment regimes. Soil Sci. Soc. Am. J. 64(1): 4-10.
[2]Zheng Fenli, Merrill S.D., Huang C. et al. 2004. Runoff, soil erosion and erodibility of Conservation Reserve Program land under crop and hay production. Soil Sci. Soc. Am. J. 68(3): 1332-1341.
[3]Zheng Fenli, Huang C. and Norton L.D. 2004. Effects of Near-Surface Hydraulic Gradients on Nitrate and Phosphorus Losses in Surface Runoff. J. Envirol. Qual. 33(6): 2174-2182.
[4]Zheng Fenli, Xiubin He, Xuetian Gao et al. 2005. Effects of erosion patterns on nutrient loss following deforestation on the Loess Plateau of China. Agriculture, Ecosystem & Environment. 108: 85-97.
[5]Zheng Fenli. 2005. Effects of accelerated soil erosion on soil nutrient loss after deforestation on the Loess Plateau. Pedosphere. 15(6):707-715.
[6]Zheng Fenli, Tang Keli. 1997. Rill erosion process on steep slope land of the Loess Plateau. International Journal of Sediment Research. 12(1): 52-59.
[7]Zheng Fenli, Xiao P, Gao X. 2004. Rill erosion process and rill flow hydraulic parameters. International Journal of Sediment Research. 19(2): 130-141.
[8]Zheng Fenli, X-C (John) Zhang, Jianxun Wang, Dennis C. Flanagan. 2020. Assessing applicability of the WEPP hillslope model to steep landscapes in the northern Loess Plateau of China. Soil & Tillage Research, 197, 104492
[9]Liu, G., Zheng Fenli, Jia, L., Jia, Y., Zhang, X. C. J., Hu, F., Zhang, J. 2019. Interactive effects of raindrop impact and groundwater seepage on soil erosion. Journal of Hydrology, 124066. (通訊作者)
[10]Qin, C., Zheng Fenli, Wilson, G. V., Zhang, X. J., Xu, X. 2019. Apportioning contributions of individual rill erosion processes and their interactions on loessial hillslopes. CATENA, 181, 104099. (通訊作者)
[11]Lei Wang, Zheng Fenli, John Zhang, Glenn Wilson, Chao Qin, Chao He, Gang Liu, Jiaqiong Zhang. 2020. Discrimination of soil losses between ridge and furrow in longitudinal ridge-tillage under simulated upslope inflow and rainfall. Soil & Tillage Research. 198, 104541. (通訊作者)
[12]Ximeng Xu, Zheng Fenli, Glenn V. Wilson, Xunchang J. Zhang, Chao Qin, Xu He. 2019. Quantification of upslope and lateral inflow impacts on runoff discharge and soil loss in ephemeral gully systems under laboratory conditions. Journal of Hydrology, 579, 124174. (通訊作者)
[13]Jiang, Y., Zheng Fenli, Wen, L., Shen, H. O. 2019. Effects of sheet and rill erosion on soil aggregates and organic carbon losses for a Mollisol hillslope under rainfall simulation. Journal of soils and sediments, 19(1), 467-477. (通訊作者)
[14]Qin, C., Wells, R. R., Momm, H. G., Xu, X., Wilson, G. V., Zheng Fenli. 2019. Photogrammetric analysis tools for channel widening quantification under laboratory conditions. Soil and Tillage Research, 191, 306-316. (通訊作者)
[15]Qin Chao, Zheng Fenli, Wells R R, Xu X, Wang B, Zhong K. 2018. A laboratory study of channel sidewall expansion in upland concentrated flows. Soil and Tillage Research,178:22-31. (通訊作者)
[16]Shen, H.O., Zheng Fenli, Wang, L., Wen, L.L. (2019). Effects of rainfall intensity and topography on rill development and rill characteristics on loessial hillslopes in China. Journal of Mountain Science, 16(10): 2299-2307. (通訊作者)
[17]Qin Chao, Zheng Fenli, Zhang J X, Xu X, Liu G. 2018. A simulation of rill bed incision processes in upland concentrated flows. Catena,165:310-319. (通訊作者)
[18]Qin C, Zheng Fenli, Xu X, Wu H, Shen H. 2018. A laboratory study on rill network development and morphological characteristics on loessial hillslope. Journal of Soils and Sediments,18:1679-1690. (通訊作者)
[19]Xu X, Zheng Fenli, Wilson G V, He C, Lu J, Bian F. 2018. Comparison of runoff and soil loss in different tillage systems in the Mollisol region of Northeast China. Soil and Tillage Research,177:1-11. (通訊作者)
[20]Wu H, Xu X, Zheng Fenli, Qin C, He X. 2018. Gully morphological characteristics in the loess hilly-gully region based on 3D laser scanning technique. Earth Surface Processes and Landforms,43(8):1701-1710. (通訊作者)
[21]Feng Z, Zheng Fenli, Hu W, Li G, Xu X. 2018. Impacts of mollic epipedon thickness and overloaded sediment deposition on corn yield in the Chinese Mollisol region. Agriculture, Ecosystems & Environment,257:175-182.(通訊作者)
[22]Jiang Y, Zheng Fenli, Wen L, Shen H. 2018. Effects of sheet and rill erosion on soil aggregates and organic carbon losses for a Mollisol hillslope under rainfall simulation. Journal of Soils and Sediments. doi.org/10.1007/s11368-018-2043-y.(通訊作者)
[23]Zhong K, Zheng Fenli, Xu X, Qin C. 2018. Discriminating the precipitation phase based on different temperature thresholds in the Songhua River Basin, China. Atmospheric Research, 205:48-59. (通訊作者)
[24]Xu X, Zheng Fenli, Wilson G V, Wu M. 2017. Upslope inflow, hillslope gradient, and rainfall intensity impacts on ephemeral gully erosion. Land Degradation & Development. (通訊作者)
[25]Hu W, Zheng Fenli, Bian F. 2016. The Directional Components of Splash Erosion at Different Raindrop Kinetic Energy in the Chinese Mollisol Region. Soil Science Society of America Journal,80(5):1329. (通訊作者)
[26]Li G, Zheng Fenli, Lu J, Xu X, Hu W, Han Y. 2016. Inflow Rate Impact on Hillslope Erosion Processes and Flow Hydrodynamics. Soil Science Society of America Journal,80(3):711-719. (通訊作者)
[27]Lu J, Zheng Fenli, Li G, Bian F, An J. 2016. The effects of raindrop impact and runoff detachment on hillslope soil erosion and soil aggregate loss in the Mollisol region of Northeast China. Soil & Tillage Research,161:79-85. (通訊作者)
[28]Shen H, Zheng Fenli, Wen L, Han Y, Hu W. 2016. Impacts of rainfall intensity and slope gradient on rill erosion processes at loessial hillslope. Soil and Tillage Research,155:429-436. (通訊作者)
[29]Yinghui Guan, Xunchang Zhang, Zheng Fenli, Bin Wang, 2015. Trends and variability of daily temperature extremes during 1960-2012 in the Yangtze River Basin, China. Global and Planetary Change, 124: 79-94. (通訊作者)
[30]Yinghui Guan, Zheng Fenli, Peng Zhang, Chao Qin, 2015. Spatial and temporal changes of meteorological disasters in China during 1950–2013. Natural Hazards, 75: 2607-2623. (通訊作者)
[31]Juan An, Zheng Fenli, Bin Wang, 2014. Using 137Cs technique to investigate the spatial distribution of erosion and deposition regimes for a small catchment in the black soil region, Northeast China. Catena, 123:243-251. (通訊作者)
[32]Juan An, Zheng Fenli, Yong Han, 2014. Effects of rainstorm patterns on runoff and sediment yield processes. Soil Science, 179(6), 293-303. (通訊作者)
[33]Haiou Shen, Zheng Fenli, Leilei Wen, Jia Lu, Yiliang Jiang, 2015. An experimental study of rill erosion and morphology. Geomorphology, 231:193-201. (通訊作者)
[34]Qiu Lin-jing, Zheng Fenli, Yin Run-sheng. 2012. SWAT-based runoff and sediment simulation in a small watershed, the loessial hilly-gullied region of China: capabilities and challenges. International Journal of Sediment Research. 27(2):226-234. (通訊作者)
[35]An J, Zheng Fenli, Lu J, et al. 2012. Investigating the Role of Raindrop Impact on Hydrodynamic Mechanism of Soil Erosion Under Simulated Rainfall Conditions. Soil Science. 177(8):517-526. (通訊作者)
[36]Wang B, Zheng Fenli, Romkens M J M. 2012. Comparison of soil erodibility factors in USLE, RUSLE2, EPIC and Dg models based on a Chinese soil erodibility database. Acta Agriculturae Scandinavica, Section B - Plant Soil Science. 1-11. DOI: 10.1080/09064710.2012.718358. (通訊作者)
[37]An Juan, Zheng Fenli, R?mkens Mathias J.M, Li Guifang. 2013. The role of soil surface water regimes and raindrop impact on hillslope soil erosion and nutrient losses. Natural Hazards, 177 (8): 517-526. (通訊作者)
[38]Bin Wang, Zheng Fenli, Frederic Darboux, M.J.M. Romkens. 2013. Soil Erodibility in Erosion by Water: A Perspective and the Chinese Experience. Geomorphology, 187:1-10. (通訊作者)
[39]Li Z, Zheng Fenli, Liu W Z, Jiang D J. Spatially downscaling GCMs outputs to project changes in extreme precipitation and temperature events on the Loess Plateau of China during the 21st Century. Global and Planetary Change, 2012, 82-83: 65-73. DOI: 10.1016/j.gloplacha.2011.11.008.
[40]Li Z, Zheng Fenli, Liu W Z. Spatiotemporal characteristics of reference evapotranspiration during 1961-2009 and its projected changes during 2011-2099 on the Loess Plateau of China. Agricultural and Forest Meteorology, 2012, 154-155: 147–155. DOI: 10.1016/j.agrformet.2011.10.019.
[41]Li Zhi, Zheng Fenli, Liu Wen-zhao, et al. 2010. Spatial distribution and temporal trends of extreme temperature and precipitation events on the Loess Plateau of China during 1961-2007. Quaternary International. 266(1-2): 92-100.
[42]鄭粉莉, 徐錫蒙, 覃超. 2016. 溝蝕過程研究進(jìn)展. 農(nóng)業(yè)機(jī)械學(xué)報(bào),47(8):48-59.
[43]鄭粉莉, 邊鋒, 盧嘉, 覃超, 徐錫蒙. 2016. 雨型對(duì)東北典型黑土區(qū)順坡壟作坡面土壤侵蝕的影響. 農(nóng)業(yè)機(jī)械學(xué)報(bào),(2):90-97.
[44]溫磊磊, 鄭粉莉, 楊青森, 沈海鷗. 2012. 雨型對(duì)東北黑土區(qū)坡耕地土壤侵蝕影響的試驗(yàn)研究. 水利學(xué)報(bào), 43(9):1084-1092.(通訊作者).
[45]賈媛媛, 鄭粉莉, 楊勤科. 2005. 黃土高原小流域分布式水蝕預(yù)報(bào)模型. 水利學(xué)報(bào), (3): 328-333(通訊作者).
[46]張玉斌, 鄭粉莉, 武敏. 2007. 土壤侵蝕引起的農(nóng)業(yè)非點(diǎn)源污染研究進(jìn)展. 水科學(xué)進(jìn)展, 18(1):123-133.(通訊作者).
[47]肖培青, 鄭粉莉, 姚文藝. 2009. 坡溝系統(tǒng)坡面徑流流態(tài)及水力學(xué)參數(shù)特征研究. 水科學(xué)進(jìn)展,20(2):236-241.(通訊作者).
[48]王彬, 鄭粉莉, 王玉璽. 2012. 東北典型薄層黑土區(qū)土壤可蝕性模型適用性分析. 農(nóng)業(yè)工程學(xué)報(bào), 28(6):126-131.(通訊作者).
[49]王磊, 何超, 鄭粉莉, 邊鋒, 覃超, 徐錫蒙. 2018. 黑土區(qū)坡耕地橫坡壟作措施防治土壤侵蝕的土槽試驗(yàn). 農(nóng)業(yè)工程學(xué)報(bào),(15):141-148. (通訊作者)
[50]覃超, 何超, 鄭粉莉, 韓林峰, 曾創(chuàng)爍. 2018. 黃土坡面細(xì)溝溝頭溯源侵蝕的量化研究. 農(nóng)業(yè)工程學(xué)報(bào),34(6):160-167. (通訊作者)
[51]王磊,師宏強(qiáng),劉剛,鄭粉莉,覃超,張勛昌,張加瓊. 黑土區(qū)寬壟和窄壟耕作的順坡坡面土壤侵蝕對(duì)比[J].農(nóng)業(yè)工程學(xué)報(bào), 2019, 35(19): 176-182. (通訊作者)
[52]徐錫蒙, 鄭粉莉, 吳紅艷, 覃超. 2015. 玉米秸稈覆蓋緩沖帶對(duì)細(xì)溝侵蝕及其水動(dòng)力學(xué)特征的影響. 農(nóng)業(yè)工程學(xué)報(bào),(24):111-119.(通訊作者)
[53]付金霞, 張鵬, 鄭粉莉, 關(guān)穎慧, 高燕. 2016. 河龍區(qū)間近55a降雨侵蝕力與河流輸沙量動(dòng)態(tài)變化分析. 農(nóng)業(yè)機(jī)械學(xué)報(bào),(02):185-192. (通訊作者)
[54]李桂芳, 鄭粉莉, 盧嘉, 安娟. 2015. 降雨和地形因子對(duì)黑土坡面土壤侵蝕過程的影響. 農(nóng)業(yè)機(jī)械學(xué)報(bào),46(4):147-154, 182. (通訊作者)
[55]沈海鷗, 鄭粉莉, 溫磊磊, 姜義亮, 盧嘉. 2015. 降雨強(qiáng)度和坡度對(duì)細(xì)溝形態(tài)特征的綜合影響. 農(nóng)業(yè)機(jī)械學(xué)報(bào),46(7):162-170.(通訊作者)
[56]沈海鷗, 鄭粉莉, 溫磊磊, 盧嘉. 2015. 雨滴打擊對(duì)黃土坡面細(xì)溝侵蝕特征的影響. 農(nóng)業(yè)機(jī)械學(xué)報(bào),46(8):104-112.(通訊作者)
[57]覃超, 吳紅艷, 鄭粉莉, 徐錫蒙, 邊鋒. 2016. 黃土坡面細(xì)溝侵蝕及水動(dòng)力學(xué)參數(shù)的時(shí)空變化特征. 農(nóng)業(yè)機(jī)械學(xué)報(bào),47(8):146-154, 207.(通訊作者).
[58]覃超, 鄭粉莉, 徐錫蒙, 何煦. 2016. 基于立體攝影技術(shù)的細(xì)溝與細(xì)溝水流參數(shù)測(cè)量及特征. 農(nóng)業(yè)機(jī)械學(xué)報(bào),47(11):150-156.(通訊作者).
[59]徐錫蒙, 鄭粉莉, 覃超, 吳紅艷. 2015. 溝蝕發(fā)育的黃土坡面上秸稈覆蓋防蝕效果研究. 農(nóng)業(yè)機(jī)械學(xué)報(bào),46(8):130-137.(通訊作者).
[60]鐘科元, 鄭粉莉, 吳紅艷, 覃超. 2017. 松花江流域極端降雨變化對(duì)流域輸沙量的影響. 農(nóng)業(yè)機(jī)械學(xué)報(bào),(8):245-252.(通訊作者).