HEADWATER

作品数:18被引量:45H指数:4
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相关领域:天文地球农业科学更多>>
相关期刊:《Chinese Geographical Science》《International Journal of Sediment Research》《Science China Chemistry》《Open Journal of Modern Hydrology》更多>>
相关基金:国家自然科学基金国家重点基础研究发展计划中国科学院知识创新工程更多>>
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Identifying the driving factors of sediment delivery ratio on individual flood events in a long-term monitoring headwater basin被引量:3
《Journal of Mountain Science》2018年第8期1825-1835,共11页WANG Ling-ling YAO Wen-yi TANG Jia-liang WANG Wen-long HOU Xin-xin 
jointly supported by the National key research priorities program of China (2016YFC0402402);National Major Science and Technology Program for Water Pollution Control and Treatment (2017ZX07101001);the National Natural Science Foundation (41301299);the Construction Project of Innovative Scientific and Technological Talents in Henan Province (162101510004)
The Sediment Delivery Ratio(SDR) has multi-fold environmental implications both in evaluating the soil and water losses and the effectiveness of conservation measures in watersheds. Various factors, including hydrolog...
关键词:Sediment delivery ratio Single flood events Rainfall erosivity Runoff erosion power Hyper-concentrated flow 
Response of snow hydrological processes to a changing climate during 1961 to 2016 in the headwater of Irtysh River Basin, Chinese Altai Mountains被引量:9
《Journal of Mountain Science》2017年第11期2295-2310,共16页ZHANG Wei KANG Shi-chang SHEN Yong-ping HE Jian-qiao CHEN An-an 
funded by the Chinese Academy of Sciences (KJZD-EW-G03-04, QYZDJSSW-DQC039);the National Science Foundation of China (NSFC 41630754, 41690144, 41421061);the Foundation of the State Key Laboratory of Cryospheric Sciences (SKLCS) at Northwest Institute of Eco-Environment and Resources (NIEER), CAS (SKLCS-OP-2017-10, SKLCS-ZZ2016)
With changing climatic conditions and snow cover regime, regional hydrological cycle for a snowy basin will change and further available surface water resources will be redistributed. Assessing snow meltwater effect o...
关键词:Irtysh River Basin CHINESE AltaiMountains SNOW HYDROLOGY ISOTOPE CLIMATE change 
Identifying soil structure along headwater hillslopes using ground penetrating radar based technique被引量:8
《Journal of Mountain Science》2016年第3期405-415,共11页HAN Xiao-le LIU Jin-tao ZHANG Jun ZHANG Zhi-cai 
supported by the National Nature Science Foundation of China (Grants No. 41271040, 51190091);The Special Fund of State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering (Grant No. 20145028012)
Soil structure plays an important role in understanding soil attributes as well as hydrological processes. Effective method to obtain high quality soil map is therefore important for both soil science research and soi...
关键词:Ground Penetrating Radar(GPR) Hillslope Soil structure 
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