[1]WANG Yueyue,WU Yuanzhi,FAN Wenhua,et al.Characteristics of Soil Aggregates in Cultivated Layer of Yimeng Mountain Area Under Different Rainfall Conditions[J].Research of Soil and Water Conservation,2022,29(01):92-99.
Copy

Characteristics of Soil Aggregates in Cultivated Layer of Yimeng Mountain Area Under Different Rainfall Conditions

References:
[1] 张猛.干湿交替过程中土壤容重,水分特征曲线和热特性的动态变化特征[D].北京:中国农业大学,2017.
[2] 杨成松,何平,程国栋,等.冻融作用对土体干容重和含水量影响的试验研究[J].岩石力学与工程学报,2003,22(Z2):2695-2699.
[3] Bodner G, Scholl P, Loiskandl W, et al. Environmental and management influences on temporal variability of near saturated soil hydraulic properties[J]. Geoderma, 2013,204-205(100):120-129.
[4] Dexter A R. Internal structure of tilled soil[J]. Journal of Soil Science, 1976,27(3):267-278.
[5] Ojeniyi S O, Dexter A R. Changes in the structure of differently tilled soil in a growing season[J]. Soil and Tillage Research, 1983,3(1):39-46.
[6] 杨晓娟,李春俭.机械压实对土壤质量、作物生长、土壤生物及环境的影响[J].中国农业科学,2008,41(7):2008-2015.
[7] 吴永波,刘爽.土壤压实对土壤性质及植物生长的影响[J].林业科技开发,2010,24(1):15-17.
[8] 卢嘉,郑粉莉,安娟,等.东北黑土区土壤团聚体迁移特征的模拟降雨试验研究[J].水土保持通报,2012,32(6):6-10.
[9] 闫峰陵,史志华,蔡崇法,等.红壤表土团聚体稳定性对坡面侵蚀的影响[J].土壤学报,2007,44(4):577-583.
[10] 史奕,陈欣,闻大中.东北黑土团聚体水稳性研究进展[J].中国生态农业学报,2005,13(4):95-98.
[11] 吴新亮.几种典型地带性土壤团聚体稳定机制及坡面侵蚀响应[D].武汉:华中农业大学,2017.
[12] 张光远,蔡崇法.黄绵土表层结皮的微形态特征及某些理化性质的研究[M]∥晋西黄土高原土壤侵蚀规律试验研究文集.北京:水利电力出版社,1990.
[13] 蔡强国,王贵平,陈永宗.黄土高原小流域侵蚀产沙过程与模拟[M].北京:科学出版社,1998.
[14] 温磊磊,郑粉莉,沈海鸥,等.东北典型黑土区农耕土壤团聚体流失特征[J].土壤学报,2015,52(3):489-498.
[15] 刘林林,王孝哲,郭祥胜,等.不同降雨强度条件下黄土边坡稳定性分析[J].人民珠江,2019,40(7):37-41,47.
[16] Martinez-Mena M, Castillo V, Albaladejo J. Relations between interrill erosion processes and sediment particle size distribution in a semiarid Mediterranean area of SE of Spain[J]. Geomorphology, 2002,45(3):261-275.
[17] 李朝霞.降雨过程中红壤表土结构变化与侵蚀特点[D].武汉:华中农业大学,2005.
[18] 安娟,卢嘉,郑粉莉,等.不同地表条件下黑土区坡耕地侵蚀过程中土壤团聚体迁移[J].水土保持学报,2011,25(6):100-104.
[19] 申艳,张晓平,梁爱珍,等.黑土坡耕地土壤流失形态分析:以一次降雨为例[J].干旱地区农业研究,2008,26(6):224-229.
[20] 刘娇.降雨侵蚀对土壤团聚体稳定性及碳氮矿化的影响[D].陕西杨凌:西北农林科技大学,2018.
[21] Or D, Leij F J, Snyder V, et al. Stochastic model for post-tillage soil pore space evolution[J]. Water Resource Research, 2000,36(7):1641-1652.
[22] Assouline S. Modeling the relationship between soil bulk density and the water retention curve[J]. Vadose Zone Journal, 2006,5(2):554-563.
[23] Liu X, Lu S, Horton R, et al. In situ monitoring of soil bulk density with a thermo‐TDR sensor[J]. Soil Science Society of America Journal, 2014,78(2):400-407.
[24] 石璞, Chiahue D Y,赵鹏志.间歇性降雨对土壤团聚体粒级及磷、铜、锌富集的影响[J].土壤学报,2021,58(4):948-956.
[25] 高学田,包忠谟.降雨特性和土壤结构对溅蚀的影响[J].水土保持学报,2001,15(3):24-26,47.
[26] 陈晓燕,牛青霞,周继,等.人工模拟降雨条件下紫色土陡坡地土壤颗粒分布空间变异特征[J].水土保持学报,2010,24(5):163-168.
[27] 周一杨,王恩姮,陈祥伟.模拟降雨条件下黑土溅蚀与团聚体分选特征[J].水土保持学报,2008,22(6):176-179.
[28] Legout C, Leguedois S, Le Bissonnais Y. Aggregate breakdown dynamics under rainfall compared with aggregate stability measurements[J]. European Journal of Soil Science, 2005,56(2):225-238.
[29] Shi P, Thorlacius S, Keller T, et al. Soil aggregate breakdown in a field experiment with different rainfall intensities and initial soil water contents[J]. European Journal of Soil Science, 2017,68(6):853-863.
[30] 安娟,王富,吴元芝,等.北方土石山区土地利用方式对褐土团聚体稳定性的影响[J].水土保持研究,2020,27(5):10-16.
Similar References:

Memo

-

Last Update: 2022-02-20

Online:483       Total Traffic Statistics:23885325

Website Copyright: Research of Soil and Water Conservation Shaanxi ICP No.11014090-10
Tel: 029-87012705 Address: Editorial Department of Research of Soil and Water Conservation, No. 26, Xinong Road, Yangling, Shaanxi Postcode: 712100