论文
2023
[1] 霍艾迪,赵志欣,王星等.马莲河流域固沟保塬工程水文响应变化及优化[J/OL].水科学进展,1-10. http://kns.cnki.net/kcms/detail/32.1309.p.20231020.1438.002.html.
[2] 王星, 霍艾迪, 吕继强, 赵志欣, 陈建, & 钟芳倩等. (2023). 塔里木河干流植被覆盖度动态变化及驱动因素分析. 农业工程学报, 39(8), 284-292.
[3] Lyu, J., Fu, X., Lu, C., Zhang, Y., Luo, P., Guo, P., Huo, A., Zhou, M. Quantitative assessment of spatiotemporal dynamics in vegetation NPP, NEP and carbon sink capacity in the Weihe River Basin from 2001 to 2020[J]. Journal of Cleaner Production, 2023, 428: 139384.
[4] Huo, A., Liu, Q., Zhao, Z., Elbeltagi, A., Abuarab, M. E. S., & Ganjidoust, H. (2023). Habitat Quality Assessment and Driving Factor Analysis of Xiangyu in Feng River Basin Based on InVEST Model. Water, 15(23), 4046. https://doi.org/10.3390/w15234046.
[5] 王星,霍艾迪,吕继强,赵志欣,陈建,钟芳倩,杨璐莹,杨磊.关中地区大气臭氧污染变化特征及其来源解析[J/OL].环境科学. https://doi.org/10.13227/j.hjkx.202305229.
[6] Zhao Z, Huo A, Cheng Y, Luo P, Peng J, Elbeltagi A, Mohamed EL, Mokhtar A. Experimental study on slope morphological characteristics and stability analysis of GCHP engineering in the loess plateau. Advances in Space Research. 2023 Nov 15;72(10):4324-35.
[7] Luo, Y.; Huo, A.; Yang, L.;Zhao, Z.; Ahmed, A.; Elbeltagi, A.;Abuarab, M.E.-S.; Ganjidoust, H. Assessment of the Implementation Effect of a Gully Consolidation and Highland Protection (GCHP) Project Based on the GeoWEPP Model. Water 2023, 15, 2971. https://doi.org/10.3390/w15162971.
[8] Zhao, Z.; Huo, A.; Liu, Q.;Peng, J.; Elbeltagi, A.; Abuarab,M.E.-S.; Abu-Hashim, M.S.D. Spatiotemporal Variation in the Coupling Relationship between Human Activities and Soil Erosion-A Case Study in the Weihe River Basin. Sustainability 2023, 15,10785. https://doi.org/10.3390/su151410785.
[9] 钟芳倩,霍艾迪,赵志欣,等.基于HEC-HMS的黄土高塬沟壑区流域城市化对洪水情势的影响[J].人民黄河,2032,45:
[10] Lyu J, Fu X, Lu C, Zhang Y, Luo P, Guo P, Huo A, Zhou M. Quantitative assessment of spatiotemporal dynamics in vegetation NPP, NEP and carbon sink capacity in the Weihe River Basin from 2001 to 2020. Journal of Cleaner Production. 2023 Nov 20;428:139384.
[11] Zhai, H.;Wang, J.; Lu, Y.;Rao, Z.; He, K.; Hao, S.; Huo, A.;Adnan, A. Prediction of the Mine Water Inflow of Coal-Bearing Rock Series Based onWell Group Pumping. Water 2023, 15, 3680. https://doi.org/10.3390/w15203680.
[12] Yang, Y.; Cui, Q.; Cheng, R.;Huo, A.;Wang, Y. Retrieval of Soil Heavy Metal Content for Environment Monitoring in Mining Area via Transfer Learning. Sustainability 2023, 15, 11765. https://doi.org/10.3390/su151511765.
[13] Zhang, J.; Gong, Y.; Huang,W.; Wang, X.; Ke, Z.; Liu, Y.; Huo, A.;Adnan, A.; Abuarab, M.E.-S. Identification of Potential Landslide Hazards Using Time-Series InSAR in Xiji County, Ningxia. Water 2023, 15,300. https://doi.org/10.3390/w15020300.
[14] Zhang, Jia, Yongfeng Gong, Wei Huang, Xing Wang, Zhongyan Ke, Yanran Liu, Aidi Huo, Ahmed Adnan, and Mohamed EL-Sayed Abuarab. Identification of Potential Landslide Hazards Using Time-Series InSAR in Xiji County, Ningxia. Water 15, no. 2 (2023): 300.
[15] Zhao, Zhixin, Qi Liu, Aidi Huo, Yuxiang Cheng, Wenke Guan, E. L. Mohamed, Ali Mokhtar, and Ahmed Elbeltagi. A novel integrated approach for monitoring drought stress in an aeolian desertification area using Vegetation Drought Status Index. Water Supply 23, no. 2 (2023): 738-748.
2022
[16] Huo, A.; Wang, X.; Zhao, Z.; Yang, L.; Zhong, F.; Zheng, C.; Gao, N. Risk Assessment of Heavy Metal Pollution in Farmland Soils at the Northern Foot of the Qinling Mountains, China. Int. J. Environ. Res. Public Health 2022, 19, 14962. https://doi.org/10.3390/ijerph192214962
[17] Huo, A.; Zhao, Z.; Luo, P.; Zheng, C.; Peng, J.; Abuarab, M.E.-S. Assessment of Spatial Heterogeneity of Soil Moisture in the Critical Zone of Gully Consolidation and Highland Protection. Water 2022, 14, 3674. https://doi.org/10.3390/w14223674
[18] Huo A, Peng J, Cheng Y, et al. Key Issues in the Research on Loess Flow Slides Under Hydraulic and Gravitational Soil Erosion[C]//Conference of the Arabian Journal of Geosciences. Springer, Cham, 2022: 295-297.
[19] Huo, A., Zhao Z, Luying Y, et al. Apparatus and method for real-time monitoring of groundwater level and soil moisture of gully head landfill area: U.S. Patent Application 17/527,199[P]. 2022-3-10.
[20] Aidi H, Jianbing P, Yuxiang C, Pingping L, Zhixin Z, Chunli Z (2021a) Hydrological Analysis of Loess Plateau Highland Control Schemes in Dongzhi Plateau. Front Earth Sci 8:528632.
[21] Aidi H, Lei Y, Pingping L, Yuxiang C, Jianbing P, Daniel N (2021b) Influence of landfill and land use scenario on runoff, evapotranspiration, and sediment yield over the Chinese Loess Plateau.Ecological Indicators 121:107208.
2021
[22] Huo A, Chen S, J Peng, et al. UAV-based gully retrogressive erosion status dynamic variability investigations in Chinese Loess Plateau[J]. Arabian Journal of Geosciences, 2021, 14(4):1-10.
2020
[23] Huo, A., Z. Huang, Y. Cheng, and M.W. Van Liew, Comparison of two different approaches for sensitivity analysis in Heihe River basin (China). Water Supply, 2020. 20(1): p. 319-327.
[24] Huo, A., L. Yang, J. Peng, Y. Cheng, and C. Jiang, Spatial characteristics of the rainfall induced landslides in the Chinese Loess Plateau. Human and Ecological Risk Assessment: An International Journal, 2020: p. 1-16. DOI: 10.1080/10807039.2020.1728517
2019
[25] Huo AD, Wang X, Liang Y, Jiang C, Zheng X (2019b) Integrated numerical model for irrigated area water resources management. Journal of Water and Climate Change.
[26] Huo, A., Wang, X., Lyu, Y., Cheng, Y., Zheng, C., & Song, J. (2019). Simulation research on the reinjection temperature fields of deep geothermal wells based on real-scale experiment. Energy Exploration & Exploitation, 37(2), 646–662.
[27] Huo, A., J. Peng, Y. Cheng, X. Zheng, and Y. Wen, Temporal Characteristics of the Rainfall Induced Landslides in the Chinese Loess Plateau (China), in Recent Advances in Geo-Environmental Engineering, Geomechanics and Geotechnics, and Geohazards. 2019, Springer. p. 425-427.
[28] Huo, A., X. Wang, Y. Cheng, C. Zheng, and C. JIANG, IMPACT OF FUTURE CLIMATE CHANGE (2020–2059) ON THE HYDROLOGICAL REGIME IN THE HEIHE RIVER BASIN IN SHAANXI PROVINCE, CHINA. International Journal of Big Data Mining for Global Warming, 2019: p. 1950003.
[29] Huo, A., Wang, X., Liang, Y., Jiang, C., Zheng, X., 2019b. Integrated numerical model for irrigated area water resources management. Journal of Water and Climate Change. https://doi.org/10.2166/wcc.2019.042
2018
[30] Huo A, Wei H, Guan W, Du W, Zhong J, Yi X Hydrochemical characteristics and effects on growth of Populus euphratica in desertification areas: A case study in Tarim National Nature Reserve of China. In: BASIC & CLINICAL PHARMACOLOGY & TOXICOLOGY, 2018. WILEY 111 RIVER ST, HOBOKEN 07030-5774, NJ USA, pp 36-36
[31] Huo A, Zheng X, Peng J, Cheng Y, Jiang C, Wen Y Gully retrogressive erosion status dynamic variability investigations based on remote sensing big data. In: BASIC & CLINICAL PHARMACOLOGY & TOXICOLOGY, 2018. WILEY 111 RIVER ST, HOBOKEN 07030-5774, NJ USA, pp 52-52
2016
[32] Huo, Aidi,Zhang, Jia,Cheng, Yuxiang,Yi, Xiu,Qiao, Liang,Su, Fengmei,Du, Yalei,Mao, Hairu. Assessing the effect of scaling methods on retrieval of soil moisture based on MODIS images in arid regionsToxicological and Environmental Chemistry, 2016, 98(3-4):410-418. http://dx.doi.org/10.1080/02772248.2015.1123484.
[33] Huo A, Peng J, Chen X, Deng L, Wang G, Cheng Y (2016) Groundwater storage and depletion trends in the Loess areas of China. Environmental Earth Sciences 75 (16):1-11. doi:10.1007/s12665-016-5951-4.
[34] Huo A-D, Guan W-K, Dang J, Wu T-Z, Shantai H, Wang W, Liew MWV (2016) Submerged area of typical torrential flood and debris-flow disasters in Mengzong Gully, China. Geomatics, Natural Hazards and Risk:1-7.
[35] Huo A-D, Dang J, Song J-X, Chen XH, Mao H-R (2016) Simulation modeling for water governance in basins based on surface water and groundwater. Agricultural Water Management, Volume 174, August 2016, Pages 22-29.
[36] Huo, A., Chen, X. *, Li, H., Hou, M. and Hou, X. Development and testing of a remote sensing-based model for estimating groundwater levels in aeolian desert areas of China.
2015
[37] Huo, A., Z. Ma, S. Guo, Y. Du, F. Su, Groundwater Flow Transfixion of Deep Heat Reservoir and Its Influence on Temperature Field. International Journal of Mathematics and Computational Science. Vol. 1, No. 5, 2015, pp. 295-302.
2014
[38] Huo, Aidi (#) (*),Zhang, Jia,Qiao, Changlu ,Li, Chenlong,Xie,Juan,Wang, Jucui,Zhang, Xu,Multispectral remote sensing inversion for city landscape water eutrophication based on Genetic Algorithm-Support Vector Machine,Water Quality Research Journal of Canada,2014,49(3):285-293。http://dx.doi.org/10.2166/wqrjc.2014.040.
2013
[39] Huo, A. Hua Li. Assessment of climate change impact on the streamflow in a typical debris flow watershed of Jianzhuangcuan catchment in Shaanxi Province, China. Environmental Earth Sciences,2013.
[40] Huo A-D, Li J-G, Jiang G-Z, Yang Y (2013) Temporal and Spatial Variation of Surface Evapotranspiration Based on Remote Sensing in Golmud Region, China. Appl. Math. Inf. Sci. 7, No. 2L, 519-524 (2013)
[41] Huo, Aidi(#)(*) ,Li, Hua,Assessment of climate change impact on the stream-flow in a typical debris flow watershed of Jianzhuangcuan catchment in Shaanxi Province, China,Environmental Earth Sciences,2013,69(6):1931-1938.
2012
[42] Ai-di H, Hui-xia Z, Li Z, Hua L, Ming H (2012) A Sampled Method of Classification of Susceptibility Evaluation Unit for Geological Hazards based on GIS. Appl Math 6 (1S):19S-23S.
2011
[43] Huo, A., Chen, X. *, Li, H., Hou, M. and Hou, X. Development and testing of a remote sensing-based model for estimating groundwater levels in aeolian desert areas of China. Can. J. Soil Sci., 91: 29-37, 2011.
[44] Huo, A., Li, H., Hou, M., Qiao, C.. Relations between surface evapotranspiration and water table: A case study base on remote sensing. African Journal of Agricultural Research[J], 6(32):6653-6660, 2011.
[45] Huo A, Chen X, Li H, Hou M, Hou X (2011) Development and testing of a remote sensing-based model for estimating groundwater levels in aeolian desert areas of China. Canadian Journal of Soil Science 91 (1):29-37.
[46] Huo, A. , et al. Methodology of land surface broadband albedo retrieval in the desertification area based on MODIS image data. International Symposium on Water Resource & Environmental Protection IEEE, 2011.
[47] Huo, A. D. , et al. Method of Classification for Susceptibility Evaluation Unit for Geological Hazards:A Case Study of Huangling County,Shaanxi,China. Journal of Jilin University(Earth Science Edition) (2011).
[48] Huo, A., et al. Study on the monitoring model of soil moisture for Aeolian desertification using MODIS image data. Proc Spie 7840(2009):78400D-78400D-7.
[49] 霍艾迪,韦红,管文轲,侯志强,郑小路,杜伟宏,温轶然,李聪怡.渭河下游垂向潜流通量动态特征研究[J].长江科学院院报,2018,35(09):17-22.
[50] 霍艾迪,卢玉东,胡安焱,吕继强,王菊翠.基于云计算技术和大数据平台的水利类专业课程体系构建[J].教育现代化,2018,5(51):355-357.DOI:10.16541/j.cnki.2095-8420.2018.51.169.
[51] 霍艾迪,张骏,卢玉东,成玉祥,姚以亮.地质灾害易发性评价单元划分方法——以陕西省黄陵县为例[J].吉林大学学报(地球科学版),2011,41(02):523-528+535.DOI:10.13278/j.cnki.jjuese.2011.02.031.
[52] 霍艾迪,张广军,赵君,曹馨升.基于MODIS数据的沙漠化地区地下水位遥感监测模型的建立——以毛乌素沙地为例[J].干旱地区农业研究,2010,28(06):196-200.
[53] 霍艾迪,康相武,张广军,李薇.基于MODIS数据的毛乌素沙地土壤水分模型的建立[J].干旱地区农业研究,2010,28(04):19-23.
[54] 霍艾迪,张广军,王国梁.基于MODIS数据的沙漠化地区地表宽波段反照率的反演方法研究——以新疆沙漠化地区为例[J].西北林学院学报,2010,25(01):212-215.
[55] 霍艾迪, 康相武, 刘志丽, 曹馨升, 利用 MODIS 数据反演沙漠化地区地表温度的简化模式——以陕西北部地区为例. 地球科学与环境学报, 2009. 31(003): p. 306-311.
[56] 霍艾迪, 刘志丽, 康相武, 侯明, 许端阳, 靳建辉, 达伟 (2008) 利用 MODIS 影像反演沙漠化地区地表温度的方法研究 [J]. 高技术通讯 18 (5):511-518
[57] 霍艾迪,康相武,王国梁,武苏里,魏洁琼.基于MODIS的沙漠化地区植被覆盖度提取模型的研究[J].干旱地区农业研究,2008(06):217-223.
[58] 霍艾迪,张广军,武苏里,岳曼.利用MODIS-NDVI进行沙化土地评价研究——以陕西省北部地区为例[J].干旱地区农业研究,2008(02):154-158.
[59] 霍艾迪, 张广军, 武苏里, 刘志丽, 国内外荒漠化动态监测与评价研究进展与存在问题. 干旱地区农业研究, 2007. 25(2): p. 206-211.
[60] 霍艾迪,张广军,武苏里,晁晓菲.基于WebGIS的农田土壤推荐施肥信息系统的初步设计与应用[J].干旱地区农业研究,2006(06):90-93+102.2023
著作
霍艾迪,吕继强,罗平平,梁燕,郑春莉. 流域水文模型与实用教材[M]. 西安:西安交通大学出版社,2022.