团队简介
北京师范大学地理科学学部土壤风蚀研究团队成员主要包括邹学勇(已退休)、严平、张春来、程宏、鲁瑞洁、亢力强、王雪松。团队长期围绕土壤风蚀过程、风沙运动机理、风沙灾害形成与防控及防沙治沙工程技术等方向开展系统研究。团队面向国家防灾减灾和北方干旱半干旱区生态安全重大需求,重点关注风蚀起动、输运、沉积及其与地表覆盖、土壤性质、气候变化和人类活动之间的耦合机制。团队先后主持973计划、国家重点研发计划课题、国家自然科学基金重点项目及面上项目等多项国家级科研任务,在风沙物理、风蚀机理与防沙治沙技术等领域取得了系列重要成果。
平台依托
团队依托北京师范大学地理学优势学科,以地表过程与水土风沙灾害风险防控全国重点实验室和防沙治沙教育部工程研究中心为核心科研平台。配备国际领先水平的大型和中型风洞及多类室内外观测仪器,是我国风沙研究、工程技术研发和人才培养的重要基地。
研究特色
团队成员在土壤风蚀、风沙物理与工程、风沙灾害、沙漠环境和风洞实验等领域具有深厚积累,形成了野外观测、风洞模拟、遥感反演、数值模拟与工程应用相结合的综合研究特色,能够为土壤风蚀机理解析、沙尘源区识别、风沙灾害风险评估及防沙治沙技术优化提供坚实的科研支撑。
主要承担的科研项目
序号 |
项目名称 |
负责人 |
项目类别 |
开始日期 |
结束日期 |
1 |
强风蚀生态受损区协同修复技术 |
程宏 |
国家科技重大专项课题 |
2025-09-01 |
2028-08-31 |
2 |
基于水资源承载力与固沙阻沙的抗逆植物筛选及植被格局优化配置技术 |
张春来 |
2024-05-01 |
2027-04-30 |
|
3 |
基于机器学习的青藏高原河岸沙丘分类与演化模式研究 |
严平 |
国家自然科学基金面上项目 |
2024-01-01 |
2027-12-31 |
4 |
风蚀速率的Cs-137示踪测量(二期) |
张春来 |
第二次青藏科考 |
2022-11-01 |
2024-10-31 |
5 |
青藏高原典型风蚀区土壤质量调查 |
鲁瑞洁 |
第二次青藏科考 |
2022-11-01 |
2024-10-31 |
6 |
伊犁河流域干旱灾害调查评估 |
鲁瑞洁 |
第三次新疆科考 |
2022-10-01 |
2025-09-30 |
7 |
北方农牧交错带生态系统抑尘服务的时空动态与流动特征研究 |
王雪松 |
青年教师科研启动项目 |
2022-10-01 |
2024-09-30 |
8 |
退化草地生态功能与生产效益协同提升技术与绿色发展模式 |
张春来 |
国家重点研发计划课题 |
2022-09-01 |
2026-08-31 |
9 |
土壤风蚀过程模型 |
程宏 |
国家重点研发计划课题 |
2022-02-16 |
2024-11-30 |
10 |
新月形沙丘合并/分离机制 |
程宏 |
国家自然科学基金面上项目 |
2022-01-01 |
2025-12-31 |
11 |
粉尘释放对中国北方农牧交错带农草地转化的响应机制 |
王雪松 |
国家自然科学基金青年项目 |
2022-01-01 |
2024-12-31 |
12 |
河西走廊阻沙固沙带防护机理与调控 |
张春来 |
国家自然科学基金联合基金重点项目 |
2022-01-01 |
2025-12-31 |
13 |
第二次青藏高原综合科学考察研究-风沙灾害风险评价与防御 |
严平 |
第二次青藏科考 |
2019-11-01 |
2024-10-31 |
14 |
输沙率对土壤颗粒特性和气流湍流脉动的响应 |
邹学勇 |
国家自然科学基金面上项目 |
2019-01-01 |
2022-12-31 |
15 |
柔性植株形态对土壤风蚀速率的影响机制 |
亢力强 |
国家自然科学基金 |
2019-01-01 |
2022-12-31 |
16 |
青藏高原爬坡沙丘分布格局与形成机制 |
严平 |
国家自然科学基金面上项目 |
2019-01-01 |
2022-12-31 |
17 |
风沙蠕移运动研究 |
程宏 |
国家自然科学基金面上项目 |
2018-01-01 |
2021-12-31 |
18 |
全新世以来干旱序列重构研究 |
鲁瑞洁 |
国家重点研发计划子课题 |
2018-01-01 |
2021-12-31 |
19 |
土壤风蚀速率对影响因子动态变化的响应 |
张春来 |
国家自然科学基金重点项目 |
2017-01-01 |
2021-12-31 |
20 |
现代亚洲风尘的释放机制及自然与人为贡献辨析 |
严平 |
国家重点研发计划课题 |
2016-07-01 |
2021-06-30 |
21 |
京津冀风沙源治理工程区生态效益评估 |
程宏 |
国家重点研发计划子课题 |
2016-07-01 |
2020-12-31 |
22 |
晚第四纪青海湖水位变化与风沙地貌发育过程 |
鲁瑞洁 |
国家自然科学基金面上项目 |
2016-01-01 |
2019-12-31 |
23 |
土壤风蚀影响因子参数化 |
邹学勇 |
国家自然科学基金重点项目 |
2014-01-01 |
2018-12-31 |
24 |
沙漠化物理过程 |
邹学勇 |
973计划(含重大科学研究计划)子课题 |
2014-08-01 |
2018-07-31 |
25 |
青藏高原高寒沙漠化指征体系 |
严平 |
973计划(含重大科学研究计划)子课题 |
2012-10-01 |
2017-09-30 |
26 |
青海共和盆地风水交互过程的观测与模拟 |
严平 |
国家自然科学基金面上项目 |
2012-01-01 |
2015-12-31 |
27 |
青海湖盆地全新世以来的风沙活动研究 |
鲁瑞洁 |
国家自然科学基金面上项目 |
2012-01-01 |
2015-12-31 |
28 |
风沙运动研究中的若干基本力学问题 |
邹学勇 |
国家自然科学基金重点项目 |
2006-01-01 |
2009-12-31 |
主要研究成果
序号 |
论文信息 |
发表时间 |
1 |
Yang Y, Zhang GH, Li CA, et al.. Revisiting slope-area thresholds for gully initiation: a systematic review and meta-analysis [J]. EARTH-SCIENCE REVIEWS, 2026, 276: 105454. |
2026.5 |
2 |
Huang MZ, Lu RJ, Zhou Y. Divergent responses of canopy structure and productivity to drought and their driving mechanisms in northern China's grasslands [J]. AGRICULTURAL WATER MANAGEMENT, 2026, 329: 110364. |
2026.5 |
3 |
Zhou ZL, Chappell A, Zhang CL, et al.. Satellite retrieved soil surface dynamics reduce the extent and frequency of sediment flux with implications for early warning systems [J]. COMMUNICATIONS EARTH & ENVIRONMENT, 2026, 7(1): 259. |
2026.3 |
4 |
Zhang YJ, Zhang CL, Wang XS, et al.. Assessment of the aeolian transport characteristics and protection status of sand-blocking and sand-fixing belts in the Hexi Corridor, northwest China [J]. INTERNATIONAL SOIL AND WATER CONSERVATION RESEARCH, 2026, 14(1): 100569. |
2026.3 |
5 |
Huang MZ, Lu RJ, Li PR, et al.. Spatiotemporal Characteristics of Drought in Yili River Basin, Northwest China in 1980-2020 [J]. CHINESE GEOGRAPHICAL SCIENCE, 2026, 36(2): 271-290. |
2026.2 |
6 |
Li XM, Yan P, Cao LG, et al.. Spatial Variation in Grain Size of Riparian Dunes in Typical Cold and Arid Deserts of China and Its Implications for Identifying Sediment Sources [J]. CHINESE GEOGRAPHICAL SCIENCE, 2026, 36(2): 291-305. |
2026.2 |
7 |
Wu XT, Cheng H, Wu B, et al.. A regional XGBoost-based predictive model for the cumulative hours of wind speed levels [J]. ATMOSPHERIC RESEARCH, 2026, 327: 108336. |
2026.1 |
8 |
Wang XM, Geng X, Sun FB, et al.. Strategies reimagined: SDG-driven solutions for combating global desertification [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2026, 123(1): e2515470123. |
2026.1 |
9 |
Zhang XY, Zhang CL, Wang XS, et al.. Comparison of the sand flow over mobile sand, farmland, and gobi surfaces and the conditions required for saturated sand flow to develop [J]. SOIL & TILLAGE RESEARCH, 2025, 254: 106703. |
2025.12 |
10 |
Xu JH, Li HR, Zou XY, et al.. Comprehensive influence of gravel cover and soil particle characteristics on wind erosion rate: A wind tunnel investigation [J]. GEODERMA, 2025, 464: 117597. |
2025.12 |
11 |
Hao MY, He JN, Hu WY, et al.. Effects of dry soil aggregate size on organic carbon, total nitrogen, and soil texture under different land uses [J]. JOURNAL OF ARID LAND, 2025, 17(10): 1482-1495. |
2025.10 |
12 |
Wu XT, Yang Y, Cheng H, et al.. Spatial distribution of soil organic matter in different particle size fractions in the wind erosion region of northeastern China [J]. CATENA, 2025, 258: 109294. |
2025.10 |
13 |
Hu SM, Zhou L, Cheng LR, et al.. A refined classification methodology for drought hazard-bearing bodies through fusion of temporal-spatial multidimensional features [J]. JOURNAL OF ARID ENVIRONMENTS, 2025, 230: 105413. |
2025.10 |
14 |
Yuan WJ, Pan BL, Yi CL, et al.. Holocene geomorphic process recorded by OSL dating of Linggo Co delta and outwash terraces from the Puruogangri area in the central Tibetan Plateau [J]. EARTH SURFACE PROCESSES AND LANDFORMS, 2025, 50(13): e70169. |
2025.10 |
15 |
Xia ZS, Wang XS, Zhang CL. Quantification of Critical Thresholds in Soil Moisture and the Leaf Area Index Regulating Aeolian Dust Events: A Sensitivity Analysis of the Response of Aeolian Dust Events to Wind Velocity Variations [J]. JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2025, 130(18): e2025JD044005. |
2025.9 |
16 |
Chen C, Long X, Guo ZX, et al.. Electrification of wind-blown microplastics and its implication for transport of floating microplastics in air [J]. JOURNAL OF HAZARDOUS MATERIALS, 2025, 495: 138992. |
2025.9 |
17 |
Huang MZ, Lu RJ, Zhang ZY, et al.. Fine-scale analysis of the cumulative and time-lagged effects of drought on vegetation in the Ili River Basin, Central Asia [J]. JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2025, 392: 126670. |
2025.9 |
18 |
Kang LQ, Zhang M. Experimental study on the relationship between wind erosion rate and microtopography around tree-like vegetation [J]. JOURNAL OF ARID ENVIRONMENTS, 2025, 229: 105404. |
2025.8 |
19 |
Zhang ZD, Li PC, Hu WY, et al.. Electric forces can enhance the emission of microplastics into air [J]. ENVIRONMENTAL POLLUTION, 2025, 376: 126405. |
2025.7 |
20 |
Kang LQ, Wang XM, Zou XY, et al.. Effect of the gravel-vegetation combination on shear-stress partitioning and sand transport rate [J]. AEOLIAN RESEARCH, 2025, 73: 100973. |
2025.6 |
21 |
Zhang X, Yan P, Liu XK, et al.. Sediment characteristics and provenance of riverine dunes on the lower Tora River in Qaidam Basin, China [J]. GEOMORPHOLOGY, 2025, 478: 109709. |
2025.6 |
22 |
Zhang YJ, Zhang CL, Wu YQ, et al.. Coarsening of typical land surface sediments by wind erosion and estimation of historical wind erosion: a case study in the southern Qinghai-Tibet Plateau [J]. JOURNAL OF SOILS AND SEDIMENTS, 2025, 25(4): 1134-1149. |
2025.4 |
23 |
Zhao XM, Wu YQ, Huang YM, et al.. Temporal and spatial evolution of vegetation cover in the wind erosion field on the Qinghai-Xizang Plateau [J]. EARTH SURFACE PROCESSES AND LANDFORMS, 2025, 50(5): e70021. |
2025.4 |
24 |
Jiang N, Jiang L, Wu XT, et al.. Characterizing barchan dune interactions based on high-resolution remote sensing imagery [J]. GEOMORPHOLOGY, 2025, 473: 109608. |
2025.3 |
25 |
Huang MZ, Lu RJ, Wu YQ, et al.. Spatiotemporal dynamics and influencing factors of soil quality in aeolian desertified lands of the Qinghai-Tibet Plateau [J]. ECOLOGICAL INDICATORS, 2025, 172: 113264. |
2025.3 |
26 |
Wang Y, Yan P, Wu W, et al.. PM10 dust emission in the Erenhot-Huailai zone of northern China based on model simulation [J]. JOURNAL OF ARID LAND, 2025, 17(3): 324-336. |
2025.3 |
27 |
Wang Y, Yan P, Wang YJ, et al.. Dust emission from different land use types based on the PI-SWERL test [J]. CATENA, 2025, 248: 108577. |
2025.1 |
28 |
Wu XT, Jiang N, Li AQ, et al.. Spatial distribution pattern of soil organic matter in the wind erosion region of northeastern China based on the cokriging method [J]. CATENA, 2025, 248: 108575. |
2025.1 |
29 |
Yuan WJ, Zheng YH, Yan P, et al.. Holocene aeolian-fluvial interactions patterns and their response to climate changes in the Paiku Co basin, Southern Tibetan Plateau [J]. HOLOCENE, 2025, 35(1): 75-88. |
2025.1 |
30 |
Dai LY, Dou RQ, Jiang CL, et al.. Driving factors of the distribution of microplastics in the surface soil of the typical uninhabited and habited areas in the Qinghai-Tibet plateau, China [J]. ENVIRONMENTAL POLLUTION, 2024, 362: 125033. |
2024.12 |
31 |
Jiang N, Cheng H. Regional differences in the grain size characteristics of surface sediments from typical barchan dunes in arid zones [J]. AEOLIAN RESEARCH, 2024, 70-71: 100939. |
2024.12 |
32 |
Li HR, Zou XY, Zhang MC, et al.. Spatial heterogeneity of shear stress on gravel-covered surfaces and its effects on soil wind erosion [J]. SOIL & TILLAGE RESEARCH, 2024, 241: 106119. |
2024.9 |
33 |
Zuo XF, Zhang CL, Zhang XY, et al.. Effects of blown sand and soil properties on the abrasion rate of compacted soil [J]. GEODERMA, 2024, 448: 116950. |
2024.8 |
34 |
Jiang N, Cheng H, Liu CC, et al.. A wind tunnel study of the effects of vegetation structural characteristics on the airflow field [J]. CATENA, 2024, 242: 108064. |
2024.7 |
35 |
Zuo XF, Zhang CL, Zhang XY, et al.. Wind tunnel simulation of wind erosion and dust emission processes, and the influences of soil texture [J]. INTERNATIONAL SOIL AND WATER CONSERVATION RESEARCH, 2024, 12(2). |
2024.6 |
36 |
Xiang HX, Wu XX, Wang RD, et al.. Flexibility evaluation of psammophytes using Young's modulus based on 3D numerical simulation [J]. FRONTIERS IN ENVIRONMENTAL SCIENCE, 2024, 12: 1380498. |
2024.6 |
37 |
Jiang N, Cheng H. Probability density distributions of morphological parameters of barchan dunes and their responses to the climate environment [J]. GEOMORPHOLOGY, 2024, 454: 109164. |
2024.6 |
38 |
Wu XT, Wang SY, Cheng H, et al.. Variation of soil organic matter with particle size in the wind erosion region of northern China [J]. CATENA, 2024, 241: 108025. |
2024.6 |
39 |
Chen DX, Lu RJ, Ma L, et al.. Holocene climate change in the Hunshandake Sandy Land, Northeast China [J]. PALAEOGEOGRAPHY PALAEOCLIMATOLOGY PALAEOECOLOGY, 2024, 643: 112182. |
2024.6 |
40 |
Du Y, Lu RJ, Ma L, et al.. A formation record of modern Nitraria tangutorum nebkhas on the Ordos Plateau of northern China based on optically stimulated luminescence dating [J]. QUATERNARY GEOCHRONOLOGY, 2024, 82: 101550. |
2024.6 |
41 |
Wang XS, Zhang CL. Sensitivity of soil dust emissions to driving factor variability in earth's main drylands [J]. GEODERMA, 2024, 445: 116876. |
2024.5 |
42 |
Zhou ZL, Zhang CL, Zou XY, et al.. Estimating lateral cover of vegetation and gravel using NDVI and albedo [J]. CATENA, 2024, 239: 107899. |
2024.4 |
43 |
Ding ZY, Lu RJ, Fan XM, et al.. Geochemical evidence for changes in provenance and paleoclimate during the Holocene obtained from a fluvial-eolian sequence in the southern Mu Us Desert, north-central China [J]. GEODERMA, 2024, 444: 116860. |
2024.4 |
44 |
Kang LQ, Zhang M, Li CY, et al.. Effect of plant shapes on sand transport rate and aerodynamic particle entrainment rate from the perspective of plant drag [J]. CATENA, 2024, 237: 107818. |
2024.3 |
45 |
Zhou ZL, Zhang CL, Chappell A, et al.. Using Field Measurements Across Land Cover Types to Evaluate Albedo-Based Wind Friction Velocity and Estimate Sediment Transport [J]. JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2024, 129(4): e2023JD040313. |
2024.2 |
46 |
Zhang XY, Zhang CL, Zuo XF, et al.. Extension of the revised wind erosion equation (RWEQ) to calculate grassland wind erosion rates based on the 137Cs tracing technique [J]. CATENA, 2024, 234: 107544. |
2024.1 |
47 |
Li SY, Zhang DP, Xing YH, et al.. Interannual dynamics and controlling factors of the ratio of actual to potential evapotranspiration across typical ecosystems within the Heihe River Basin [J]. HYDROLOGICAL PROCESSES, 2024, 38(1): e15073. |
2024.1 |
48 |
Ding ZY, Lu RJ, Liu XK, et al.. Geochemical evidence of provenance diversity in Holocene sandy land of Qinghai Lake Basin in the north-eastern margin of Qinghai-Tibet Plateau and its implications for climate change [J]. SEDIMENTOLOGY, 2024, 71(1): 54-80. |
2024.1 |
49 |
Chen X, Wang XS. Loss and conservation of soil organic carbon and nutrients in arid and semiarid China during aeolian dust emissions [J]. SOIL & TILLAGE RESEARCH, 2024, 235: 105910. |
2024.1 |
50 |
Dong M, Yan P, Wang XX, et al.. Morphological characteristics and dynamic changes of typical climbing dunes on the Qinghai-Tibet Plateau [J]. GEOMORPHOLOGY, 2023, 440: 108869. |
2023.11 |
51 |
Wang XX, Yan P, Zhang X, et al.. Climate and environmental changes recorded by aeolian sediment during the last glaciation in the western Qaidam Basin [J]. GEOMORPHOLOGY, 2023, 440: 108878. |
2023.11 |
52 |
Liu XY, Zhang CL, Wang ZT, et al.. Simplifying Raupach's model of shear-stress partitioning by clarifying the relationship between β and σ and quantifying the shear-stress probability density based on numerical simulation [J]. EARTH SURFACE PROCESSES AND LANDFORMS, 2023, 48(13): 2584-2594. |
2023.10 |
53 |
Lv DW, Liu YX, Ren L, et al.. Assessment of atmospheric heavy metal pollution in Qinghai-Tibet Plateau: Using mosses as biomonitor [J]. JOURNAL OF HAZARDOUS MATERIALS, 2023, 459: 132181. |
2023.10 |
54 |
Chen DX, Lu RJ, Liu XK, et al.. Holocene human activities recorded by pollen in the Mu Us Sandy Land in north-central China [J]. GLOBAL AND PLANETARY CHANGE, 2023, 229: 104243. |
2023.10 |
55 |
Ding ZY, Lu RJ, Liu XK, et al.. High-northern-latitude forcing modulated fluvial-aeolian interplay during the Last Glacial Period in the Mu Us Desert, northern central China [J]. QUATERNARY SCIENCE REVIEWS, 2023, 315: 108255. |
2023.9 |
56 |
Li XM, Liu XK, Yan P, et al.. Geochemical features and their implication of provenances of riparian dunes in the northern China deserts [J]. JOURNAL OF GEOGRAPHICAL SCIENCES, 2023, 33(9): 1921-1938. |
2023.9 |
57 |
Wu XX, Fang H, Fan PP, et al.. Airflow Field and Shelter Effect Around Flexible Plants Using Fluid-Structure Interaction (FSI)-Large-Eddy-Simulation (LES) Simulations [J]. JOURNAL OF GEOPHYSICAL RESEARCH-BIOGEOSCIENCES, 2023, 128(8): e2022JG007061. |
2023.8 |
58 |
Zhang XY, Zhang CL, Li WP, et al.. Dust emission efficiency of compacted soils as a function of amount of abrader and soil texture [J]. GEODERMA, 2023, 435: 116503. |
2023.7 |
59 |
Tian X, Yang MN, Guo ZL, et al.. Amount and characteristics of microplastic and organic matter in wind-blown sediment at different heights within the aeolian sand saltation layer [J]. ENVIRONMENTAL POLLUTION, 2023, 327: 121615. |
2023.6 |
60 |
Wei GR, Zhang CL, Li Q, et al.. An evaluation of topsoil carbon storage in Chinese deserts [J]. SCIENCE OF THE TOTAL ENVIRONMENT, 2023, 872: 162284. |
2023.5 |
61 |
Yuan YX, Zhang CL, Wang RD, et al.. The fetch effect on sand transport above a farmland surface and conditions for saturation [J]. SOIL & TILLAGE RESEARCH, 2023, 229: 105674. |
2023.5 |
62 |
Shen YP, Zhang CL, Zhang YJ. Assessment of wind erosivity based on wind speed conversion over different averaging times [J]. JOURNAL OF SOILS AND SEDIMENTS, 2023, 23(5): 2037-2047. |
2023.5 |
63 |
Yang MN, Tian X, Guo ZL, et al.. Wind erosion induced low-density microplastics migration at landscape scale in a semi-arid region of northern China [J]. SCIENCE OF THE TOTAL ENVIRONMENT, 2023, 871: 162068. |
2023.5 |
64 |
Wang XS, Ferreira CSS. Studying the function of ecosystem in preventing aeolian dust emission in the dryland areas of China [J]. EUROPEAN JOURNAL OF SOIL SCIENCE, 2023, 74(3): e13371. |
2023.5 |
65 |
Qiu PP, Zhang L, Wang XS, et al.. A new approach of air pollution regionalization based on geographically weighted variations for multi-pollutants in China [J]. SCIENCE OF THE TOTAL ENVIRONMENT, 2023, 873: 162431. |
2023.5 |
66 |
Wang XM, Ge QS, Geng X, et al.. Unintended consequences of combating desertification in China [J]. NATURE COMMUNICATIONS, 2023, 14(1): 1139. |
2023.2 |
67 |
Chen DX, Lu RJ, Liu XK, et al.. Holocene vegetation and climate reconstructions from pollen records in the Mu Us Sandy Land, China [J]. CATENA, 2023, 220: 106698. |
2023.1 |
68 |
Wei GR, Zhang CL, Li Q, et al.. Characterization of geochemical elements in surface sediments from Chinese deserts [J]. CATENA, 2023, 220: 106637. |
2023.1 |
69 |
Zhang CL, Wei GR, Zou XY, et al.. The varying fetch effect of aeolian sand transport above a gobi surface and its implication for gobi development process [J]. INTERNATIONAL SOIL AND WATER CONSERVATION RESEARCH, 2022, 10(4): 623-634. |
2022.12 |
70 |
Wei GR, Zhang CL, Li Q, et al.. Grain-size composition of the surface sediments in Chinese deserts and the associated dust emission [J]. CATENA, 2022, 219: 106615. |
2022.12 |
71 |
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