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[ 12] 申冠卿,张原锋,张敏 .  小浪底水库运用后黄河下游河道洪水与泥沙输移特性[J]  泥沙研究,2020,45(6):
                                                                                      .
                      59-66.
               [ 13] HUANG H Q,NANSON G C.  Hydraulic geometry and maximum flow efficiency as products of the principle of least
                             .
                      action[J]  Earth Surface Processes and Landforms,2000,25(1):1-16.
               [ 14] XU J X.  Sediment storage in the reach of the middle Yellow River located in the Fenwei Graben,China[J]  Hydro‐
                                                                                                     .
                      logical Processes,2003,27(18):2623-2636.
               [ 15] PEIRCE  S, ASHMORE  P, LEDUC  P.   The  variability  in  the  morphological  active  width: Results  from  physical
                                                  .
                      models of gravel-bed braided rivers[J]  Earth Surface Processes and Landforms,2018,43(11):2371-2383.
               [ 16] BRENNA  A, BIZZI  S, SURIAN  N.   A  width-based  approach  to  estimating  historical  changes  in  coarse  sediment
                      fluxes at river reach and network scales[J]  Earth Surface Processes and Landforms,2022,47(10):2560-2579.
                                                     .
               [ 17] 王远见,王强,刘彦晖,等 .  小浪底水库运行以来对黄河下游河道河床演变特性的影响[J]  水利学报,
                                                                                                 .
                      2024,55(5):505-515.
               [ 18] 王延贵,刘焕永,陈吟 .  北方主要河流水沙变异及其成因[J]  中国水利水电科学研究院学报(中英文),
                                                                        .
                      2024,22 (4):333-341,396.
               [ 19] 张金良,练继建,张远生,等 .  黄河水沙关系协调度与骨干水库的调节作用[J]  水利学报,2020,51(8):
                                                                                      .
                      897-905.
                                                                        .
               [ 20] 胡春宏,张双虎,张晓明 .  新形势下黄河水沙调控策略研究[J]  中国工程科学,2022,24(1):122-130.
               [ 21] 申冠卿,姜乃迁,张原锋,等 .  黄河下游断面法与沙量法冲淤计算成果比较及输沙率资料修正[J]  泥沙研
                                                                                                    .
                      究,2006(1):32-37
               [ 22] CHU  Z  X.   The  dramatic  changes  and  anthropogenic  causes  of  erosion  and  deposition  in  the  lower  Yellow  River
                      (Huanghe)River since 1952[J]  Geomorphology,2014,216:171-179.

                                              .
                                                         .
               [ 23] 韩其为 .  泥沙运动统计理论前沿研究成果[J]  水利学报,2018,49(9):1040-1054.
                                                             .
               [ 24] 张罗号 .  黄河河槽糙率异常原因及其解决途径[J]  水利学报,2012,43(11):1261-1270.
               [ 25] 王随继,闫云霞,颜明,等 .  皇甫川流域降水和人类活动对径流量变化的贡献率分析——累积量斜率变化率
                                           .
                      比较方法的提出及应用[J]  地理学报,2012,67(3):388-397.
                                                   .
               [ 26] SCHUMM S A.  The Fluvial System[M]  New York:John Wiley and Sons,1977.
               [ 27] BRANDT  S  A.   Classification  of  geomorphological  effects  downstream  of  dams[J]   Catena, 2000, 40(4):
                                                                                      .
                      375-401.
                                                                .
               [ 28] 钱宁,洪柔嘉,麦乔威,等 .  黄河下游的糙率问题[J]  泥沙研究,1959,4(1):3-17.
               [ 29] LANE E W.  Design of Stable Channels[J]  Transactions of the American Society of Civil Engineers, 1955, 120
                                                      .
                      (1):1234-1260.
               [ 30] 张红武 .  黄河下游洪水模型相似律的研究[D]  北京:清华大学,1995.
                                                          .
               [ 31] LIU L,WANG H J,YANG Z S,et al.  Coarsening of sediments from the Huanghe (Yellow River)delta-coast and

                                              .
                      its environmental implications[J]  Geomorphology,2022,401:108105.
               [ 32] 胡春宏,张治昊 .  论黄河河道平衡输沙量临界阈值与黄土高原水土流失治理度[J]  水利学报,2020,51(9):
                                                                                      .
                      1015-1025.
               [ 33] 安 催 花 , 鲁 俊 , 吴 默 溪 , 等 .  黄 河 下 游 河 道 平 衡 输 沙 的 沙 量 阈 值 研 究[J]  水 利 学 报 , 2020, 51(4):
                                                                                    .
                      402-409.












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