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王军光

Supervisor of Doctorate Candidates
Supervisor of Master's Candidates
Name (Simplified Chinese):王军光
Name (Pinyin):wangjunguang
Professional Title:Professor
Education Level:With Certificate of Graduation for Doctorate Study
Degree:博士
Business Address:资环楼203
E-Mail:
Teacher College:College of Resources & Environment
School/Department:资源与环境学院
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个人简介

2013年毕业于华中农业大学土壤学专业,获博士学位,留校任教。2018-2019年赴美国农业部国家泥沙实验室访问学习。主要从事土壤结构、侵蚀机理与过程、水土保持和环境生态等方面的教学和研究工作。主持国家自然科学基金3项,国家重点研发计划子课题3项,其他省部级课题4项,作为骨干成员参与国家自然科学基金重点项目2项,联合基金重点项目1项。中国水土保持学会水土保持学科建设和人才培养专业委员会副主任委员,中国土壤学会土壤侵蚀与水土保持专业委员会委员,第三次全国土壤普查湖北省外业调查组专家,《水土保持研究》编委,《土壤学报》青年编委。在Soil & Tillage Research、Catena、Land Degradation & Development 、Earth Surface Processes and Landforms、农业工程学报、土壤学报等国内外期刊发表科研论文70余篇,主编专著1部,参编著作教材3部。

教学情况

本科生:《水土保持学》、《方案编制与监测》、《水土资源调查与规划》、《水土保持学实验》、《水土资源调查与规划实验、实习》

研究生:《水土保持研究方法》、《水土保持研究进展》

主持华中农业大学教学改革研究项目2项,参与2项,发表教研论文3篇。

学术兼职

《水土保持研究》 编委

《土壤学报》 青年编委

中国水土保持学会水土保持学科建设和人才培养专业委员会 副主任委员

ANSO-世界黑土联合会中国黑土研究会 理事

中国土壤学会土壤侵蚀与水土保持专业委员会 委员

中国资源环境与生态保育学会 理事

湖北省水土保持学会预防与监督专业委员会 委员

湖北省农业工程学会农业水土工程分会 委员

湖北省水土保持技术服务专家

科学研究

1.国家自然科学基金区域创新发展联合基金,长江中游典型坡耕地土壤团聚体演变特征与生态调控,U25A20816,2026/01-2029/12,主持专题

2.国家自然科学基金面上项目,降雨-薄层水流驱动下土壤团聚体周转路径及其影响机制,42177317,2022/01-2025/12,主持

3.重点研发计划子课题,水力侵蚀主导的复合侵蚀过程及其对耕地质量影响机理,2021YFD1500703,2021/12-2024/11,主持

4.重点研发计划子课题,侵蚀退化黑土生态生产功能区域分异及障碍因子,2021YFD1500803,2021/12-2024/11,主持子任务

5.国家自然科学基金面上项目,不同胶结特性土壤坡面泥沙输移特征对侵蚀形态的响应,41771304,2018/01-2021/12,主持

6.重点研发计划子课题,崩岗区生态系统退化特点及防控技术适宜性研究,2017YFC0505404,2017/07-2021/6,主持

7.国家自然科学基金青年基金项目,41401303,含沙水流和坡面糙度对红壤团聚体输移破坏影响,2015/01-2017/12,主持

8.张湾区农业农村局,十堰市张湾区第三次全国土壤普查外业调查(剖面样),2024/01-2025/07,主持

9.张湾区农业农村局,张湾区第三次土壤普查成果编制与汇总服务项目,2024/07-2026/12,主持

10.襄州区农业农村局,襄州区第三次全国土壤普查(剖面样品采集),2024/03-2025/07,主持

11.东津新区(经开区)农业水利服务中心,襄阳东津新区(经开区)第三次全国土壤普查剖面样品采样调查,2024/03-2025/07,主持

12.湖北省水利水电科学研究院,湖北省大别山区典型小流域次降雨水土流失预报模型研究,2023/03-2026/03,主持

13.校自主科技创新基金,花岗岩红壤坡面水蚀动力-泥沙输移关系对崩岗启动的作用机制,2020/05-2022/12,主持

14.湖北省水利水电科学研究院,不同结构土壤斥水性对坡面侵蚀过程的综合影响及其作用机理研究,2015/01-2017/12,主持

15.湖北省水利水电科学研究院,湖北主要侵蚀区水土流失综合调控原理与治理模式研究实施方案,2014/01-2014/12,主持

16.长江水利委员会,丹江口库区及上游国家重点防治区水土流失动态监测,2020/03-2020/11,主持子任务

17.长江水利委员会,湘资沅澧上中游国家重点防治区水土流失动态监测遥感解译,2016/2017,主持子任务

18.校自主创新基金项目,坡面底部糙度与水力学特性耦合作用下团聚体破坏特征研究2013/07-2014/12,主持

19.国家自然科学基金重点项目,41630858,花岗岩风化岩土体特性的地带性分异及崩岗形成机理研究,2017/01-2021/12,参与

20.国家自然科学基金重点项目,40930529,红壤团聚体稳定性及其在坡面侵蚀过程中的迁移转化规律,2010/01-2013/12,参与

21.国家自然科学基金面上项目,41471231,典型地带性土壤团聚体抗侵蚀稳定性及其与铁铝氧化物关系,2015/01-2018/12,参与

获奖与专利

湖北省优秀博士学位论文奖(2014)

湖北省优秀学士学位论文指导奖(2015,洪灿)

指导研究生获华中农业大学优秀博士学位论文(2025,彭珏)

指导研究生获国家奖学金(2025,耿佟佟)

指导研究生获国家奖学金(2024,彭珏)

指导研究生获国家奖学金(2024,张晨阳)

2023年度暑期社会实践优秀指导教师(2023)

指导研究生获华中农业大学优秀硕士学位论文(2022,彭珏)

指导研究生获国家奖学金(2022,汪零)

指导本科生获华中农业大学优秀学士学位论文(2022,张逸飞)

指导研究生获国家奖学金(2021,倪世民)

学院青年教师教学技能竞赛三等奖(2020)

指导研究生获国家奖学金(2020,文慧)

指导本科生获华中农业大学优秀学士学位论文(2020,徐容许)

指导大学生暑期社会实践获优秀团队二等奖(2019)

华中农业大学教学质量三等奖(2018)

学院就业创业工作先进个人(2017)

华中农业大学教学质量三等奖(2016)

华中农业大学优秀班主任(2016)

指导华中农业大学国家级大学生创新训练项目结题优秀(2016)

博士研究生国家奖学金 (2013)

土壤学报年度优秀论文奖(2012)

河南省优秀应届毕业生(2007)

发明专利:

一种用于降雨过程中粗颗粒土壤表面砾石覆盖率测定方法(排名1,CN 114677358 B)

实用新型专利:

用于坡面侵蚀研究的供沙装置(排名1,CN206470166U)

溅蚀收集装置及溅蚀测定设备(排名3,CN206609769U)

软件著作权:

用于降雨过程中粗颗粒土壤表面砾石覆盖测定系统(排名1, 2022SR0373932)

白鹤滩库区遥感生态指数评价系统(排名2, 2022SR0662524)

主要论文

[1] Zhang Chenyang, Yang Wei, Wang Ling, Peng Jue, Wang Junguang*, Li Zhaoxia. Evaluation of interrill erosioninduced aggregate turnover and its influence on sediment particles using rare earth elements. Catena 2026, 262, 109666.

[2] Peng Jue, Geng Tongtong, Wang Qiankun, Zhang Chenyang, Wang Junguang*, Cai Chongfa. Responses of soil pore structure and erosion resistance to long-term cultivation in the Mollisol region of Northeast China. Catena 2025, 261, 109520.

[3] Geng Tongtong, Wang Zhonghua, Wang Qiankun, Yang Qingsong, Wang Junguang*. Effects of land-use type and soil depth on soil physicochemical properties, enzyme activities and bacterial community composition in black soil region of Northeast China. Catena 2025, 258, 109276.

[4] Peng Jue, Wu Yuyao, Geng Tongtong, Zhang Chenyang, Wang Junguang*, Cai Chongfa. Soil pore dynamics and infiltration characteristics as affected by cultivation duration for Mollisol in northeast China. Geoderma 2024, 449, 117021.

[5] Yang Qingsong, Peng Jue, Ni Shimin, Zhang Chenyang, Wang Junguang*, CaiChongfa. Soil erosion-induced decline in aggregate stability and soil organic carbon reduces aggregate-associated microbial diversity and multifunctionality of agricultural slope in the Mollisol region. Land Degradation & Development 2024, 35, 3714-3726. 

[6] Yang Qingsong, Peng Jue, Ni Shimin, Zhang Chenyang, Wang Junguang*, Cai Chongfa. Erosion and deposition significantly affect the microbial diversity, co-occurrence network, and multifunctionality in agricultural soils of Northeast China. Journal of Soils and Sediments 2024, 24, 888-900.

[7] Peng Jue, Wang Junguang*, Yang Qingsong, Long Ling, Li Huiyan, Guo Zhonglu, Cai Chongfa. Spatial variation in soil aggregate stability and erodibility at different slope positions in four hilly regions of northeast China. Catena 2024, 235, 107660.

[8] Wang Ling, Zhang Chenyang, Peng Jue, Xu Ling, Wang Junguang*, Cai Chongfa. Splash erosion-induced soil aggregate turnover and associated organic carbon dynamics. Soil & Tillage Research 2024, 235, 105900.

[9] Peng Jue, Yang Qingsong, Zhang Chenyang, Ni Shimin, Wang Junguang*, Cai Chongfa. Aggregate pore structure, stability characteristics, and biochemical properties induced by different cultivation durations in the Mollisol region of Northeast China. Soil & Tillage Research 2023, 233, 105797.

[10] Peng Jue, Xu Xin, Wen Hui, Ni Shimin, Wang Junguang*, Cai Chongfa. Effects of different vegetation restoration types on soil infiltration characteristics in severely eroded subtropical regions of South China. Journal of soil and water conservation 2023, 78 (4), 364-375.

[11] Ni Shimin, Peng Jue, Wang Junguang*, Zhu Lianqi, Wang Dong, Cai Chongfa. Impacts of slope morphological evolution on subsequent erosion for a coarse-textured soil. Geoderma 2023, 430, 116320.

[12] Xu Xin, Wen Hui, Ni Shimin, Wang Junguang*, Cai Chongfa. Variation in characteristics of soil resistance with typical vegetation restoration in severely eroded subtropical regions of South China. Journal of Soils and Sediments 2023, 23, 77–90.

[13] Ni Shimin, Zhang Zhiwei, Wang Junguang*, Cai Chongfa. Linking rill development characteristics to sediment production on different coarse-textured granite topsoils. Catena 2022, 214, 106295.

[14] Peng Jue, Wu Xinliang, Ni Shimin, Wang Junguang*, Song Yantun, Cai Chongfa. Investigating intra-aggregate microstructure characteristics and influencing factors of six soil types along a climatic gradient. Catena 2022, 210, 105867.

[15] Ni Shimin, Wen Hui, Wilson, G.V., Cai Chongfa, Wang Junguang*. A simulated study of surface morphological evolution on coarse-textured soils under intermittent rainfall events. Catena 2022, 208, 105767.

[16] Jiang Min, Jiang Chong*, Huang Wumeng, Chen Weilian, Gong Qinghua, Yang Ji, Zhao Ying, Zhuang Changwei, Wang Junguang*, Yang Zhiyuan. Quantifying the supply-demand balance of ecosystem services and identifying its spatial determinants: A case study of ecosystem restoration hotspot in Southwest China. Ecological Engineering 2022, 174, 106472.

[17] Ni Shimin, Zhang Deqian, Cai Chongfa, Wilson, G.V., Zhang Jianhua, Wang Junguang*. Exploring rainfall kinetic energy induced erosion behavior and sediment sorting for a coarse-textured granite derived soil of south China. Soil and Tillage Research 2021, 208, 104915.

[18] Wen Hui, Ni. Shimin., Wang, Junguang*, Cai, Chongfa. Changes of soil quality induced by different vegetation restoration in the collapsing gully erosion areas of southern China. International Soil and Water Conservation Research. 2021, 9(2), 195-206.

[19] Ni Shimin, Zhang Deqian, Wen Hui, Cai Chongfa, Wilson, G.V., Wang Junguang*. Erosion processes and features for a coarse-textured soil with different horizons: a laboratory simulation. Journal of Soils and Sediments 2020, 20, 2997-3012.

[20] Wang Junguang, Feng Shuyue, Ni Shimin, Wen Hui, Cai Chongfa, Guo Zhonglu*. Soil detachment by overland flow on hillslopes with permanent gullies in the Granite area of southeast China. Catena, 2019, 183, 104235.

[21] Ni Shimin, Feng Shuyue, Zhang deqian, Wang Junguang*, Cai Chongfa. Sediment transport capacity in erodible beds with reconstituted soils of different textures. Catena, 2019, 183, 104197.

[22] Wang Junguang, Yu Bing, Ni Shimin, Guo Zhonglu*, Cai Chongfa. Effects of sediment load on the abrasion of soil aggregate and hydraulic parameters in experimental overland flow. Journal of Integrative Agriculture, 2019, 18(0), 2-11.

[23] Feng shuyu, Wei Hui, Ni Shimin, Wang Junguang*, Cai Chongfa. Degradation Characteristics of Soil-Quality-Related Physical and Chemical Properties Affected by Collapsing Gully: The Case of Subtropical Hilly Region, China. Sustainability, 2019, 11(12), 3369.

[24] Hao Haoxin, Wang Junguang*, Guo Zhonglu*, Hua Li. Water erosion processes and dynamic changes of sediment size distribution under the combined effects of rainfall and overland flow. Catena, 2019,173, 494-504.

[25] Wu Xinliang, Wei Yujie, Wang Junguang*, Cai Chongfa*, Deng Yusong, Xia Jinwen. RUSLE erodibility of heavy textured soils as affected by soil type, erosion degradation and rainfall intensity: a field simulation. Land Degradation & Development, 2018, 1-14.

[26] Wu Xinliang, Wei Yujie, Wang Junguang*, Xia Jinwen, Cai Chongfa*, Wei Zhiyuan. Effects of soil type and rainfall intensity on sheet erosion processes and sediment characteristics along the climatic gradient in central-south China. Science of the Total Environment, 2018, 621: 54-66.

[27] Wang Junguang, Yu Bing, Yang Wei, Cheng Jianing, Song Yunrui, Cai Chongfa. The abrasion of soil aggregate under different artificial rough beds in overland flow. Catena, 2017, 155: 183-190.

[28] Wang Junguang, Yang Wei, Yu Bing, Li Zhaoxia, Cai Chongfa, Ma Renming. Estimating the influence of related soil properties on macro- and micro-aggregate stability in Ultisols of south-central China. Catena, 2016, 137: 545-553.

[29] Wu Xinliang, Cai Chongfa, Wang Junguang*, Wei Yujie, Wang Shuo. Spatial variations of aggregate stability in relation to sesquioxides for zonal soils, South-central China Soil & Tillage Research. 2016, 157: 11-22.

[30] Wang Junguang, Li Zhaoxia, Cai Chongfa*, Ma Renming. Particle size and shape variation of Ultisol aggregates affected by abrasion under different transport distances in overland flow. Catena, 2014, 123: 153-162.

[31] Wang Junguang, Li Zhaoxia, Cai Chongfa*, Yang Wei, Ma Renming, Zhang Guobiao. Effects of stability, transport distance and two hydraulic parameters on aggregate abrasion of Ultisols in overland flow. Soil & Tillage Research. 2013, 126, 134-142.

[32] Wang Junguang, Li Zhaoxia, Cai Chongfa*, Yang Wei, Ma Renming, Zhang Guobiao. Predicting physical equations of soil detachment by simulated concentrated flow in Ultisols (subtropical China). Earth Surface Processes and Landforms, 2012, 37: 633-641.

[33] Wang Junguang, Li Zhaoxia, Cai Chongfa*, Yang Wei. Effects of transport distance and flow discharge of overland flow on destruction of Ultisol aggregates. Particuology, 2012, 10: 607-613.

[34] Wei Yujie, Wu Xinliang, Wang Junguang, Yu Hongliang, Xia Jinwen, Deng Yusong, Zhang Yong, Xiang Yu, Cai Chongfa, Guo Zhonglu*. Identification of geo-environmental factors on Benggang susceptibility and its spatial modelling using comparative data-driven methods. Soil and Tillage Research, 2021, 208: 104857.

[35] Hao haoxin, Qin Jiahui, Sun Zhaoxiang, Guo Zhonglu*, Wang Junguang. Erosion-reducing effects of plant roots during concentrated flow under contrasting textured soils. 2021, Catena, 203: 105378.

[36] Wei yujie, Wu Xinliang*, Cai Chongfa, Wang Jie, Xia Jinwen, Wang Junguang, Guo Zhonglu, Yuan Zaijian. Impact of erosion-induced land degradation on rainfall infiltration in different types of soils under field simulation. Land Degradation & Development, 2019, 30: 1751-1764.

[37] Wu Xinliang, Wei Yujie, Wang Junguang, Xia Jinwen, Cai Chongfa*, Wu Lanlan, Fu Zhiyong, Wei Zhiyuan. Effects of erosion degree and rainfall intensity on erosion processes for Ultisols derived from quaternary red clay. Agriculture, Ecosystems & Environment, 2017, 249: 226-236.

[38] Wu Xinliang, Wei Yujie, Wang Junguang*, Wang Di, She Li, Wang Jie, Cai Chongfa*. Effects of soil physicochemical properties on aggregate stability along a weathering gradient. Catena, 2017, 156: 205-215.

[39] Ma Renming, Cai Chongfa, Wang Junguang, Wang Tianwei, Li Zhaoxia*, Xiao Tiqiao, Peng Guanyun. Partial least squares regression for linking aggregate pore characteristics to detachment of undisturbed soil by simulated concentrated flow in Ultisols (subtropical China). Jouranl of Hydrology, 2015, 524: 44-52.

[40] Ma Renming, Li Zhaoxia*, Cai Chongfa, Wang Junguang. The dynamic response of splash erosion to aggregate mechanical breakdown through rainfall simulation events in Ultisols (subtropical China). Catena, 2014, 121: 279-287.

[41]  Ma Renming, Cai Chongfa, Li Zhaoxia*, Wang Junguang, Xiao Tiqiao, Peng Guanyun, Yang Wei. Evaluation of soil aggregate microstructure and stability under wetting and drying cycles in two Ultisols using synchrotron-based X-ray micro-computed tomography. Soil & Tillage Research, 2015, 149: 1-11.

[42] Li Zhaoxia, Cai Chongfa*, Yang Wei, Wang Junguang. Aggregate Mechanical stability and relationship with aggregate breakdown under simulated rainfall. Soil Science, 2013, 178(7): 369-377.

[43] Yang Wei, Li Zhaoxia*, Cai Chongfa, Wang Junguang, Hua Zhongguang. Tensile strength and friability of Ultisols in sub-tropical China and effects on aggregate breakdown under simulated rainfall. Soil Science. 2012, 177(6): 377-383.

[44] Yang Wei, Li Zhaoxia*, Cai Chongfa, Guo Zhonglu, Chen Jiazhou, Wang Junguang. Mechanical properties and soil stability affected by fertilizer treatments for an Ultisol in subtropical China. Plant and Soil. 2013, 363(1-2): 157-174.

[45] 周天赐, 王中华, 耿佟佟, 王军光*, 蔡崇法. 黑土缓坡耕地全生育期作物对自然降雨径流泥沙特征的影响. 水土保持研究, 2026, 33(3): 1-10.

[46] 吴勤玉, 张晨阳, 杨伟, 刘芮彤, 王军光*. 基于稀土元素示踪法定量分析冻融作用下黑土团聚体周转和有机碳的变化. 土壤学报, 2025, 62(6):1766-1779.

[47] 王乾坤, 张歆, 杨伟, 彭珏, 王军光*. 亚热带崩岗侵蚀区不同植被恢复类型对土壤团聚体孔隙特征的影响. 土壤学报, 2025, 62(5):1282-1293.

[48] 彭珏, 龙凌, 郭忠录, 王军光*, 蔡崇法.东北黑土区侵蚀农田土壤质量指数构建及其空间分异. 农业工程学报, 2024, 40(15): 54-64.EI

[49] 杨青松, 杨伟, 彭珏, 王军光*, 郑淑文, 蔡崇法. 典型黑土区坡耕地土壤微生物多样性及群落结构对侵蚀-沉积的响应. 土壤学报, 2024, 61(6): 1741-1754.

[50] 张晨阳, 杨伟, 汪零, 彭珏, 王军光*, 蔡崇法. 基于REE示踪对红壤细沟间侵蚀团聚体周转和泥沙迁移特征的研究. 土壤学报, 2024, 61(6): 1492-1505.

[51] 张逸飞, 汪零, 徐玲, 王军光. 降雨驱动下红壤团聚体的溅蚀特征及周转过程. 水土保持研究, 2023, 30(4): 27-33, 41.

[52] 彭珏, 陈家赢, 王军光*, 蔡崇法. 中国典型地带性土壤团聚体稳定性与孔隙特征的定量关系. 农业工程学报, 2022, 38(18): 113-121.EI

[53] 罗斌, 张勇, 张志伟, 倪世民, 张歆, 王军光*. 激光扫描和摄影测量在坡面侵蚀演变过程的适用性. 农业工程学报, 2022, 38(17): 101-109.EI

[54] 汪零, 吴文枭, 倪世民, 王军光*, 蔡崇法. 溅蚀过程中红壤团聚体周转路径的定量表征. 农业工程学报, 2022, 38(8): 115-123.EI

[55] 杨青松, 倪世民, 王军光*, 蔡崇法. 粗颗粒土壤坡面侵蚀泥沙颗粒特征. 水土保持学报, 2022, 36(4): 30-36

[56] 张健华, 汪运东, 杨青松, 倪世民, 王军光*, 蔡崇法. 鄂东南花岗岩红壤不同土层侵蚀过程. 水土保持研究, 2022, 29(5): 55-61.

[57] 文慧, 倪世民, 王艺彤, 王军光*, 蔡崇法. 赣南崩岗区不同植被类型粉砂质土壤抗剪强度及其影响因素. 土壤学报, 2022, 59(06): 1517-1526.

[58] 张德谦, 倪世民, 王军光*, 吴文枭, 蔡崇法. 不同侵蚀程度花岗岩红壤坡面侵蚀泥沙颗粒特征研究. 土壤学报, 2020, 57: 1-13.

[59]  , 倪世民, 冯舒悦, 王军光*, 蔡崇法. 赣南崩岗的发育阶段及部位对土壤水力性质的影响. 农业工程学报, 2019, 35(24): 136-143.EI

[60] 倪世民, 张德谦, 冯舒悦, 王军光*, 蔡崇法. 不同质地重塑土坡面水沙定量关系研究. 土壤学报, 2019, 56(6): 1336-1346.

[61] 冯舒悦, 文慧, 倪世民, 张德谦, 王军光*, 蔡崇法. 南方典型崩岗综合治理模式研究. 中国水土保持, 2019, 443(2): 24-28.

[62] 文慧, 冯舒悦, 王军光*, 倪世民, 蔡崇法. 南方红壤区不同崩岗侵蚀治理模式及评价指标体系研究. 中国水土保持, 2019(09): 40-44+69.

[63] 倪世民, 冯舒悦, 王军光*, 蔡崇法. 不同质地重塑土坡面细沟侵蚀形态与水力特性及产沙的关系. 农业工程学报, 2018, 15: 149-156.EI

[64] 倪世民, 杨伟, 王杰, 王军光*, 蔡崇法.不同类型土壤团聚体斥水性及其对溅蚀的影响 水土保持学报, 2018, 32(1): 167-173.

[65] 周洋, 姜敏, 李梦雨, 王军光*. 湘中丘陵区紫色土坡耕地水土保持措施效益的试验研究. 水土保持学报, 2017, 31(6): 134-138.

[66] 余冰, 宋云瑞, 程嘉宁, 王军光*, 蔡崇法, 段猷. 不同模拟糙度集中水流内红壤团聚体剥蚀特征研究. 土壤学报, 2016, 53(4): 860-868.

[67] 余冰, 王军光*, 蔡崇法, 张友辉, 杨伟. 不同模拟糙度定床坡面集中水流水力学特性研究. 水土保持学报, 2015, 2: 50-54.

[68] 王军光, 李朝霞, 蔡崇法*, 王玉华, 马仁明, 张国彪. 坡面流水力学参数对团聚体剥蚀程度的定量影响. 水科学进展, 2012, 23(3): 372-377. EI

[69]  王军光, 李朝霞, 蔡崇法*, 杨伟, 马仁明, 王天巍. 坡面水流中不同层次红壤团聚体剥蚀程度研究. 农业工程学报, 2012, 28(19): 78-84. EI

[70] 王军光, 李朝霞*, 蔡崇法, 杨伟, 马仁明, 张国彪. 集中水流内红壤分离速率与团聚体特征及抗剪强度定量关系. 土壤学报, 2011, 48(6): 25-32.

[71] 王军光, 李朝霞, 蔡崇法*, 郭忠录, 杨伟. 坡面冲刷过程中红壤分离速率定量研究, 长江流域资源与环境, 2011, 20(1): 96-100.

[72] 王军光, 李朝霞, 蔡崇法*, 杨伟. 坡面薄层水流水动力学特性及对红壤分离速率的定量影响.第十届海峡两岸环境资源与生态保育学术研讨会论文集,159-165, 武汉, 2010, 718-720.

[73] 冯舒悦, 王军光, 文慧, 倪世民, 华丽*, 蔡崇法, 赣南崩岗侵蚀区不同部位土壤抗剪强度及其影响因素研究. 土壤学报, 2020, DOI:10.11766/trxb201901300514.

[74] 闫璐, 王军光, 蔡崇法. 不同层次黄棕壤团聚体在坡面集中水流中的输移特征. 水土保持学报, 2014, 28(2): 30-35.

[75] 马美景, 王军光, 郭忠录*, 蔡崇法. 放水冲刷对红壤坡面侵蚀过程及溶质迁移特征的影响研究. 土壤学报, 2016, 53(2): 365-374.

[76] 马仁明, 蔡崇法, 李朝霞*, 王军光, 冯君园, 吴新亮, 朱惠荣. 前期土壤含水率对红壤团聚体稳定性及溅蚀的影响. 农业工程学报, 2014, 30(3): 95-103. EI

[77] 马仁明, 王军光, 李朝霞*, 蔡崇法, 王硕. 降雨过程中红壤团聚体粒径变化对溅蚀的影响. 长江流域资源与环境, 2013, 22(6): 779-785.

著作教材

1.《崩岗区土壤系统退化特征及防控技术效益评价》,主编

2. 中国红壤》,参编

3.红壤坡面侵蚀过程与模拟》,副主编

4. 《水土保持学导论》,参编

 


Educational Experience

[1] 2007.9——2013.6
华中农业大学 > Doctoral Degree in Agriculture > 农学博士学位

Work Experience

[1] 2023.11-Now
华中农业大学 > 资源与环境学院 > 教授
[2] 2018.1-2023.11
华中农业大学资源与环境学院
副教授 

[3] 2013.7-2017.12
华中农业大学资源与环境学院
讲师 

[4] 2018.12-2019.12
美国农业部国家泥沙实验室
访问学者 

Social Affiliations

[1] 

《土壤学报》 青年编委

[2] 

ANSO-世界黑土联合会中国黑土研究会 理事

[3] 

中国土壤学会土壤侵蚀与水土保持专业委员会委员

[4] 

中国资源环境与生态保育学会理事

[5] 

湖北省水土保持学会预防与监督专业委员会委员

[6] 

湖北省农业工程学会农业水土工程分会委员