1. Qiu Haijun*, Cui Yifei,Pei Yanqian, Yang Dongdong, Hu Sheng, Wang Xingang, Ma Shuyue. Temporalpatterns of nonseismically triggered landslides in Shaanxi Province, China.CATENA, 2020, 187: 104356. (中科院SCI一區+TOP期刊)
2. QiuHaijun*, Cui Peng, Regmi Amar Deep, Hu Sheng, Wang Xingang,Zhang Yuzhu, He Yi. Influence of topography and volume on mobility of loessslides within different slip surfaces. CATENA, 2017, 157: 180-188. (中科院SCI一區+TOP期刊)
3. QiuHaijun*, Regmi Amar Deep, Cui Peng, Cao Mingming, LeeJingzhong, Zhu Xinghua. Size distribution of loess slides in relation to localslope height within different slope morphologies. CATENA, 2016, 145:155-163. (中科院SCI一區+TOP期刊)
4. Yang Dongdong, Qiu Haijun*, Ma Shuyue, LiuZijing, Du Chi, Zhu Yaru, Cao Mingming. Slow surface subsidence and its impacton shallow loess landslides in a coal mining area. CATENA, 2022, 209: 105830. (中科院SCI一區+TOP期刊)
5. Yang Dongdong, Qiu Haijun*, Hu Sheng, PeiYanqian, Wang Xingang, Du Chi, Long Yongqing, Cao Mingming. Influence ofsuccessive landslides on topographic changes revealed by multitemporalhigh-resolution UAS-based DEM. CATENA, 2021, 202: 105229. (中科院SCI一區+TOP期刊)
6. He Jianyin, Qiu Haijun*, Qu Feihang, HuSheng, Yang Dongdong, Shen Yongdong, Zhang Yan, Sun Hesheng, Cao Mingming.Prediction of spatiotemporal stability and rainfall threshold of shallowlandslides using the TRIGRS and Scoops3D models. CATENA, 2021, 197: 104999. (中科院SCI一區+TOP期刊)
7. Liu Zijing, Qiu Haijun*, Ma Shuyue, YangDongdong, Pei Yanqian, Du Chi, Sun Hesheng, Hu Sheng, Zhu Yaru. Surfacedisplacement and topographic change analysis of the Changhe landslide onSeptember 14, 2019, China. Landslides, 2021, 18(4), 1471-1483.(Top期刊)
8. Ma Shuyue, QiuHaijun*, Hu Sheng, YangDongdong, Liu Zijing. Characteristicsand geomorphology change detection analysis of the Jiangdingya landslide onJuly 12, 2018,
China. Landslides, 2021, 18:383–396 (Top期刊)
9. Qu Feihang, QiuHaijun*, Sun Hesheng, Tang Minggao. Post-failurelandslide change detection and analysis using optical satellite Sentinel-2images. Landslides, 2021, 18:447–455(Top期刊)
10. Zhu Yaru, QiuHaijun*, Yang Dongdong, Liu Zijing, Ma Shuyue, Pei Yanqian, He Jianyin, DuChi, Sun Hesheng. Pre- and post-failure spatiotemporal evolution of loess landslides:a case study of the Jiangou landslide in Ledu, China. Landslides,2021, 18(10), 3475-3484 (Top期刊)
11. Liu Ya, QiuHaijun*, Yang Dongdong, Liu Zijing, Ma Shuyue, Pei Yanqian Pei, Zhang JuanjuanZhang, Bingzhe Tang. Deformation responses of landslides to seasonal rainfallbased on InSAR and wavelet analysis. Landslides, 2021, DOI 10.1007/s10346-021-01785-4
12. Hu Sheng, QiuHaijun*, Yanqian Pei, Cui Yifei, XieWanli, Wang Xingang, Yang Dongdong, Tu Xiang, Zou Qiang, Cao Puyuan, CaoMingming. Digital terrain analysis of a landslide on the loess tableland usinghigh-resolution topography data. Landslides, 2019, 16(3),617-632 (Top期刊)
13. Hu Sheng, QiuHaijun*, Wang Xingang, Gao Yu, Wang Ninglian, Wu Jiang, Yang Dongdong, CaoMingming. Acquiring high-resolutiontopography and performing spatial analysis of loess landslides by usinglow-cost UAVs. Landslides, 2018, 15(3), 593-612 (Top期刊)
14. Yang Dongdong, Qiu Haijun*, Zhu Yaru, Liu Zijing, Pei Yanqian, Ma Shuyue, Du Chi, SunHesheng, Liu Ya, Cao Mingming. Landslide Characteristics and Evolution: What WeCan Learn from Three Adjacent Landslides. Remote Sensing, 2021, 13, 4579. (Top期刊)
15. Zhu Yaru, QiuHaijun*, Liu Zijing, Wang Jiading, Yang Dongdong, Pei Yanqian, Ma Shuyue, DuChi, Sun Hesheng, Wang Luyao. Detecting Long-Term Deformation of a LoessLandslide from the Phase and Amplitude of Satellite SAR Images: A RetrospectiveAnalysis for the Closure of a Tunnel Event. Remote Sensing, 2021, 13, 4841. (Top期刊)
16. Qiu Haijun*, CuiPeng, Regmi Amar Deep, Hu Sheng, Wang Xingang, Zhang Yuzhu. The effects of slope length and slope gradient onthe size distributions of loess slides: Field observations and simulations. Geomorphology,2018, 300, 69-76.
17. Yang Dongdong, Qiu Haijun*, Hu Sheng, Zhu Yaru, Cui Yifei, Du Chi, Liu Zijing, PeiYanqian, Cao Mingming. Spatiotemporal distribution and evolutioncharacteristics of successive landslides on the Heifangtai tableland of theChinese Loess Plateau. Geomorphology, 2021,378:107619.
18. Hu Sheng, QiuHaijun*, Wang Ninglian, Cui Yifei, Wang Jiading, Wang Xingang, Ma Shuyue, YangDongdong, Cao Mingming. The influence of loess cave development upon landslidesand geomorphologic evolution: A case study from the northwest Loess Plateau,China. Geomorphology, 2020, 359:107167.
19. He Yi, QiuHaijun*, Song Jinxi, Zhao Yan, Zhang Limei, Hu Sheng, Hu Yiyi. Quantitativecontribution of climate change and human activities to runoff changes in theBahe River watershed of the Qinling Mountains, China. Sustainable Cities andSociety, 2019, 51: 101729
20. Qiu Haijun*, HuSheng, Yang Dongdong, He Yi, Pei Yanqian, Kamp Ulrich. Comparing landslide sizeprobability distribution at the landscape scale (Loess Plateau and the QinbaMountains, Central China) using double Pareto and inverse gamma. Bulletin ofEngineering Geology and the Environment, 2021, 80:1035–1046
21. Qiu Haijun*, CuiPeng, Regmi Amar Deep, Hu Sheng, Zhang Yuzhu, He Yi. Landslidedistribution and size versus relative relief (Shaanxi Province, China).Bulletin of Engineering Geology and the Environment, 2018, 77(4), 1331-1342.
22. Qiu Haijun*, CuiPeng, Hu Sheng, Regmi Amar Deep, Wang Xingang, Yang Dongdong. Developingempirical relationships to predict loess slide travel distances: a case studyon the Loess Plateau in China. Bulletin of Engineering Geology and theEnvironment, 2018, 77(4), 1299-1309.
23. Qiu Haijun*, CuiYifei, Hu Sheng, Yang Dongdong, Pei Yanqian, Yang Wenlu. Temporal and spatialdistributions of landslides in the Qinba Mountains, Shaanxi Province, China. Geomatics,Natural Hazards and Risk, 2019, 10(1): 599-621.
24. Qiu Haijun*, Cui Yifei,Hu Sheng, Yang Dongdong, Pei Yanqian, Ma Shuyue, Liu Zijing. Size distributionand size of loess slides in response to slope height and slope gradient basedon field survey data. Geomatics, Natural Hazards and Risk, 2019, 10(1): 1443–1458
25. Hu Sheng, QiuHaijun*, Yang Dongdong, Cao Mingming, Song Jinxi, Wu Jiang, Huang Chenlu,Gao Yu. Evaluation of the applicability of climate forecast system reanalysisweather data for hydrologic simulation: A case study in the Bahe River Basin ofthe Qinling Mountains, China. Journal of Geographical Sciences, 2017,27(5):546-564.
26. Qiu Haijun*, CuiYifei, Yang Dongdong, Pei Yanqian, Hu Sheng, Ma Shuyue, Hao Junqing, LiuZijing. Spatiotemporal Distribution of Nonseismic Landslides during the Last 22Years in Shaanxi Province, China. ISPRS International Journal ofGeo-Information, 2019, 8:505.
27. Yang Dongdong, Qiu Haijun*, Pei Yanqian, Hu Sheng, Ma Shuyue, Liu Zijing, ZhangYan, Cao Mingming. Spatial and Temporal Evolution of the Infiltration Characteristicsof a Loess Landslide. ISPRS International Journal of Geo-Information, 2020, 9, 26; doi:10.3390/ijgi9010026.
28. Yanqian Pei, QiuHaijun*, Sheng Hu, Dongdong Yang, Yan Zhang, Shuyue Ma, Mingming Cao. Appraisalof tectonic-geomorphic features in the Hindu Kush- Himalayas. Earth and SpaceScience, 2021, 8, e2020EA001386.
29. Qiu Haijun*, CuiPeng, Regmi Amar Deep, Wang Yanmin, Hu Sheng. Slope height and slope gradientcontrols on the loess slide size within different slip surfaces. PhysicalGeography, 2017, 38(4):303-317.
30. Qiu Haijun*, RegmiAmar Deep, Cui Peng, Hu Sheng, Wang Yanmin, He Yi. Slopeaspect effects of loess slides and its spatial differentiation in differentgeomorphologic types. ArabianJournal of Geosciences, 2017, 10:344.
31. Qiu Haijun*, CuiPeng, Regmi Amar Deep, Hu Sheng, Hao Junqing. Loess slide susceptibilityassessment using frequency ratio model and artificial neural network. QuarterlyJournal of Engineering Geology and Hydrogeology, 2019, 52: 38-45
32. Qiu Haijun*, HuSheng, Wang Xingang, Yang Dongdong, Pei Yanqian, Ma Shuyue. Size and spatialdistribution of loess slides on the Chinese Loess Plateau. Physical Geography,2020, 41:126-144.
33. Ma Shuyue, QiuHaijun*, Hu Sheng, Pei Yanqian, Yang Wenlu, Yang Dongdong, Cao Mingming.Quantitative assessment of landslide susceptibility on the Loess Plateau in China.Physical Geography, 2020, 41:6,489-516