[1] |
FENG Xian-dao, HAN Peng-peng, QIU Zheng-zhong, WANG Cong.
Influence of Sediment Concentration on Silting Thickness in Immersed Tube Base Groove
[J]. Journal of Yangtze River Scientific Research Institute, 2023, 40(8): 10-15.
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[2] |
ZHAI Wen-liang, TANG Jian, WANG Cheng-gang, LI Xiao-meng, ZHAO Ke-feng.
Simulation of Non-point Source Pollution in Danjiangkou Reservoir Basin Based on Coupled Improved Output Coefficient Method and SWAT Model
[J]. Journal of Yangtze River Scientific Research Institute, 2023, 40(7): 50-58.
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[3] |
JIN Hai-yang, WANG Li, ZHAO Liang-yuan, QIN He, TAO Jing-xiang.
Variation Characteristics and Flux of TN and TP in Water Level Fluctuation Zone of Danjiangkou Reservoir
[J]. Journal of Yangtze River Scientific Research Institute, 2023, 40(5): 58-62.
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[4] |
ZUO Jian, LIN Yun-fa, DENG Shan, LIAN Lei-lei, WANG Xian-zheng.
Factors Affecting the Benefit of Danjiangkou Reservoir Utilization
[J]. Journal of Yangtze River Scientific Research Institute, 2022, 39(5): 22-27.
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[5] |
ZHANG Qian-zhu, DENG Hao-jun, LU Yang, ZHOU Huo-ming, GAO Qiang, ZHOU YU-hong.
Status Quo of Hydrochemical Characteristics in Danjiangkou Reservoir
[J]. JOURNAL OF YANGTZE RIVER SCIENTIFIC RESEARCH INSTI, 2020, 37(9): 24-30.
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[6] |
LÜ Chao-nan, JIN Zhong-wu, LIN Mu-song, LI Qiu-li, WANG Yu-xuan.
Impact of Reservoir Construction on Water andSediment Transport in Minjiang River Basin
[J]. JOURNAL OF YANGTZE RIVER SCIENTIFIC RESEARCH INSTI, 2020, 37(8): 9-15.
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[7] |
XIE Ling-xian, LIU Yue-xiao, HUANG Zhuo, LIN Li, CAO Hui-qun.
Effect of Ionic Surfactant on Incipient Motion of Fine Grain Sediment
[J]. Journal of Yangtze River Scientific Research Institute, 2020, 37(11): 14-19.
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[8] |
HUANG Ren-yong, WANG Min, ZHANG Xi-bing, ZHOU Man, REN Shi, LIU Liang.
Calculation and Study on Dynamic Operation Mode of “Storing Clear Water and Releasing Muddy Water” in the Three Gorges Reservoir in Flood Season
[J]. JOURNAL OF YANGTZE RIVER SCIENTIFIC RESEARCH INSTI, 2020, 37(1): 7-12.
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[9] |
WANG Xin-cai, WU Min.
Considerations on Strengthening Protection and Management of Water Source Area for the Middle Route of South-to-North Water Transfer Project
[J]. JOURNAL OF YANGTZE RIVER SCIENTIFIC RESEARCH INSTI, 2019, 36(9): 1-5.
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[10] |
ZHOU Feng-nian.
Retrieving Suspended Sediment Concentration by Using Water Surface Points of Infrared Laser and Green Laser in Airborne LiDAR Bathymetry
[J]. JOURNAL OF YANGTZE RIVER SCIENTIFIC RESEARCH INSTI, 2019, 36(11): 167-170.
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[11] |
ZHENG Jian-gen, ZHANG Song-da , XIE Min, HU Cheng-fei.
Characteristics and Causes of Flow and Sediment Change in Three Rivers of Ningbo City
[J]. JOURNAL OF YANGTZE RIVER SCIENTIFIC RESEARCH INSTI, 2018, 35(5): 6-11.
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[12] |
WANG Shi-ru, LEI Wei-li.
Sediment Characteristics and Topography Evolution in Xinghua Bay
[J]. JOURNAL OF YANGTZE RIVER SCIENTIFIC RESEARCH INSTI, 2017, 34(8): 1-5.
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[13] |
HUANG Jian-cheng, ZHAO Ping, YAN Xia, MA Xiu-qin, ZHOU Yin-jun.
Influence of Reservoir Sedimentation on Operation of Tibet’s Zhala Hydropower Station
[J]. JOURNAL OF YANGTZE RIVER SCIENTIFIC RESEARCH INSTI, 2017, 34(6): 7-11.
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[14] |
SHAO Xue-jie, GU Sheng-ping, CAO Ai-wu, HE Hai-xiang, YU Ting-ting.
Wavelet Analysis on Flow and Sediment Variation in Sandy Rivers
[J]. JOURNAL OF YANGTZE RIVER SCIENTIFIC RESEARCH INSTI, 2017, 34(5): 5-8.
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[15] |
HE Fang-zhou, ZHU Yong-hui, GUO Xiao-hu, CHEN Dong.
Research Advances in Recovery of Suspended SedimentConcentration Downstream of a Reservoir
[J]. JOURNAL OF YANGTZE RIVER SCIENTIFIC RESEARCH INSTI, 2017, 34(12): 1-6.
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