[1] 罗英菡, 刘畅, 田国行. 城市发展与河网演变间的相互作用——以郑州市主城区为例[J]. 水土保持通报, 2021, 41(2): 258 − 266.

LUO Yinghan, LIU Chang, TIAN Guoxing. Interaction between urban development and river network evolution: a case study in main urban area of Zhengzhou City [J]. Bulletin of Soil and Water Conservation, 2021, 41(2): 258 − 266.
[2]

YANG Long, TIAN Fuqiang, NIYOGI D. A need to revisit hydrologic responses to urbanization by incorporating the feedback on spatial rainfall patterns [J]. Urban Climate, 2015, 12: 128 − 140.
[3]

HORTON R E. Erosional development of streams and their drainage basins; hydrophysical approach to quantitative morphology [J]. Bulletin of the Geological Society of America, 1945, 56(3): 275 − 370.
[4]

STRAHLER A N. Quantitative analysis of watershed geomorphology [J/OL]. Transactions, American Geophysical Union, 1957, 33(6): 913[2023-04-30]. doi: 10.1029/TR038i006p00913.
[5]

BEVAN V, MACVICAR B, CHAPUIS M, et al. Enlargement and evolution of a semi-alluvial creek in response to urbanization [J]. Earth Surface Processes and Landforms, 2018, 43(11): 2295 − 2312.
[6]

JOHNSON P, ROYALL D. Evaluating the effects of urbanization age on the morphology of low-order urban streams in the US southern Piedmont [J]. Physical Geography, 2019, 40(1): 1 − 27.
[7]

JULIAN J P, WILGRUBER N A, de BEURS K M, et al. Long-term impacts of land cover changes on stream channel loss [J]. Science of the Total Environment, 2015, 537: 399 − 410.
[8]

VICENTE M L, ROMERO E N, CAMMERAAT E. Hydrological connectivity does change over 70 years of abandonment and afforestation in the Spanish Pyrenees [J]. Land Degradation &Development, 2017, 28(4): 1298 − 1310.
[9]

DENG Xiaojun. Correlations between water quality and the structure and connectivity of the river network in the southern Jiangsu Plain, Eeastern China [J]. Science of the Total Environment, 2019, 664: 583 − 594.
[10] 傅春, 李云翊, 王世涛. 城市化进程下南昌市城区水系格局与连通性分析[J]. 长江流域资源与环境, 2017, 26(7): 1042 − 1048.

FU Chun, LI Yunyi, WANG Shitao. Analysis of water system structure and connectivity in the center of Nanchang under the urbanization process [J]. Resources and Environment in the Yangtze Basin, 2017, 26(7): 1042 − 1048.
[11] 李景保, 于丹丹, 张瑞, 等. 近61年来长江荆南三口水系连通性演变特征[J]. 长江流域资源与环境, 2019, 28(5): 1214 − 1224.

LI Jingbao, YU Dandan, ZHANG Rui, et al. Evolution characteristics of river network of the three estuaries of southern Jing River in the past 61 years [J]. Resources and Environment in the Yangtze Basin, 2019, 28(5): 1214 − 1224.
[12] 李子贻, 许有鹏, 何玉秀, 等. 城市化下平原河流水系变化及空间响应[J]. 生态学报, 2021, 41(22): 8953 − 8964.

LI Ziyi, XU Youpeng, HE Yuxiu, et al. Changes of plain river network and its spatial responses to urbanization [J]. Acta Ecologica Sinica, 2021, 41(22): 8953 − 8964.
[13] 窦明, 靳梦, 牛晓太, 等. 基于遥感数据的城市水系形态演变特征分析[J]. 武汉大学学报(工学版), 2016, 49(1): 16 − 21.

DOU Ming, JIN Meng, NIU Xiaotai, et al. Analysis of evolution characteristics of urban water system form based on remote sensing data [J]. Engineering Journal of Wuhan University, 2016, 49(1): 16 − 21.
[14] 高青峰, 郭胜, 阙志夏, 等. 城市水系结构形态演变特征分析——以哈尔滨主城区为例[J]. 水利水电技术, 2018, 49(7): 54 − 61.

GAO Qingfeng, GUO Sheng, QUE Zhixia, et al. Analysis on evolution characteristics of structural pattern of urban water system: a case of main urban area of Harbin [J]. Water Resources and Hydropower Engineering, 2018, 49(7): 54 − 61.
[15] 蒋祺, 郑伯红. 城市用地扩展对长沙市水系变化的影响[J]. 自然资源学报, 2019, 34(7): 1429 − 1439.

JIANG Qi, ZHENG Bohong. The relationship between the change of water system and the urban land expansion in Changsha [J]. Journal of Natural Resources, 2019, 34(7): 1429 − 1439.
[16] 许晓露, 郝利娜, 刘汉湖, 等. 平山造城工程下的延安新区河网水系演变[J]. 河南理工大学学报(自然科学版), 2022, 41(4): 72 − 79.

XU Xiaolu, HAO Li’ na, LIU Hanhu, et al. Evolution of river network system in the mountain excavation and city construction in Yan’ an New District [J]. Journal of Henan Polytechnic University (Natural Science), 2022, 41(4): 72 − 79.
[17] 吴丽君, 胡康, 冀泓宇, 等. 城市化对福州市河网演变特征的影响[J/OL]. 水生态学杂志, 2022[2023-04-30]. doi: 10.15928/j. 1674-3075.202206090219.

WU Lijun, HU Kang, JI Hongyu, et al. Influence of urbanization on river network evolution in Fuzhou City [J/OL]. Journal of Hydroecology, 2022[2023-04-30]. doi:10.15928/j.1674-3075.202206090219.
[18] 严春军, 杨大庆. 上海市河网水系演变特征及对城市化过程的响应[J]. 人民长江, 2014, 45(11): 40 − 43.

YAN Chunjun, YANG Daqing. Analysis on change characteristics of river network of Shanghai City and its response to urbanization [J]. Yangtze River, 2014, 45(11): 40 − 43.
[19] 林芷欣, 许有鹏, 代晓颖, 等. 城市化对平原河网水系结构及功能的影响——以苏州市为例[J]. 湖泊科学, 2018, 30(6): 1722 − 1731.

LIN Zhixin, XU Youpeng, DAI Xiaoying, et al. Effect of urbanization on the river network structure and functions: a case study in Suzhou City [J]. Journal of Lake Sciences, 2018, 30(6): 1722 − 1731.
[20] 刘海针, 许有鹏, 林芷欣, 等. 太湖平原武澄锡虞区水系结构及水文连通性变化分析[J]. 长江流域资源与环境, 2021, 30(5): 1069 − 1075.

LIU Haizhen, XU Youpeng, LIN Zhixin, et al. Change of river structure and hydrological connectivity in Wu-Cheng-Xi-Yu Region of the Taihu Lake Plain [J]. Resources and Environment in the Yangtze Basin, 2021, 30(5): 1069 − 1075.
[21] 胡家昱, 刘丙军. 基于空间自回归和地理加权回归模型的佛山市中心城区河网水系演变驱动分析[J]. 水文, 2019, 39(2): 7 − 13.

HU Jiayu, LIU Bingjun. Analysis of river network changes based on spatial auto-regression and geographic weighted regression model [J]. Journal of China Hydrology, 2019, 39(2): 7 − 13.
[22] 刘国栋, 田昆, 袁兴中, 等. 中国传统生态智慧及其现实意义——以丽江古城水系为例[J]. 生态学报, 2016, 36(2): 472 − 479.

LIU Guodong, TIAN Kun, YUAN Xingzhong, et al. Traditional Chinese ecological wisdom and its practical meaning: a case study of the river system in Lijiang Old Town [J]. Acta Ecologica Sinica, 2016, 36(2): 472 − 479.
[23] 王敏, 叶沁妍, 托马斯·赫尔德. 行为主体互动下的水系空间管理与生态服务优化: 基于德国埃姆舍河发展演变的实证研究[J]. 风景园林, 2017(1): 52 − 59.

WANG Min, YE Qinyan, HELD T. Riparian zones management with effective eco-services provision under the interaction of stakeholders: a case study of the Emscher River in Germany [J]. Landscape Architecture, 2017(1): 52 − 59.
[24] 吕慧华, 周峰, 李娜, 等. 苏北里下河典型区河网水系演变特征研究[J]. 长江流域资源与环境, 2018, 27(2): 380 − 385.

LÜ Huihua, ZHOU Feng, LI Na, et al. Evolution characteristics of the river network in the typical area of Lixiahe Region [J]. Resources and Environment in the Yangtze Basin, 2018, 27(2): 380 − 385.
[25] 邓晓军, 许有鹏, 韩龙飞, 等. 城市化背景下嘉兴市河流水系的时空变化[J]. 地理学报, 2016, 71(1): 75 − 85.

DENG Xiaojun, XU Youpeng, HAN Longfei, et al. Spatial-temporal changes of river systems in Jiaxing under the background of urbanization [J]. Acta Geographica Sinica, 2016, 71(1): 75 − 85.
[26] 林芷欣, 许有鹏, 代晓颖, 等. 城市化进程对长江下游平原河网水系格局演变的影响[J]. 长江流域资源与环境, 2019, 28(11): 2612 − 2620.

LIN Zhixin, XU Youpeng, DAI Xiaoying, et al. Effect of Urbanization on the plain river network structure in the lower reaches of the Yangtze River [J]. Resources and Environment in the Yangtze Basin, 2019, 28(11): 2612 − 2620.
[27] 徐遥辰, 刘贲, 卢奂, 等. 基于CORONA KH-4B影像的湿地景观格局重建——以杭州西溪湿地为例[J]. 浙江大学学报(工学版), 2018, 52(11): 2233 − 2242.

XU Yaochen, LIU Bi, LU Huan, et al. Reconstruction of landscape pattern based on CORONA KH-4B image: a case study in Xixi Wetland, Hangzhou [J]. Journal of Zhejiang University (Engineering Science), 2018, 52(11): 2233 − 2242.
[28]

SCHULLER D J, RAO A R, JEONG G D. Fractal characteristics of dense stream networks [J]. Journal of Hydrology, 2001, 243(1/2): 1 − 16.
[29] 韩龙飞, 许有鹏, 邵玉龙, 等. 城市化对水系结构及其连通性的影响——以秦淮河中、下游为例[J]. 湖泊科学, 2013, 25(3): 335 − 341.

HAN Longfei, XU Youpeng, SHAO Yulong, et al. Effect of urbanization on the stream structure and connectivity: a case study in the mid-lower reaches of the Qinhuai River [J]. Journal of Lake Sciences, 2013, 25(3): 335 − 341.
[30]

TARBOTON D G, BRAS R L, RODRIGUEZ-ITURB I. The fractal nature of river networks [J]. Water Resources Research, 1988, 24(8): 1317 − 1322.
[31] 陈文波, 肖笃宁, 李秀珍. 景观指数分类、应用及构建研究[J]. 应用生态学报, 2002, 13(1): 121 − 125.

CHEN Wenbo, XIAO Duning, LI Xiuzhen. Classification, application, and creation of landscape indices [J]. Chinese Journal of Applied Ecology, 2002, 13(1): 121 − 125.
[32] 吴雅妮. 基于遥感的桐乡水系时空变化研究[D]. 杭州: 浙江大学, 2020.

WU Yani. The Study of Spatial and Temporal Changes in Water Systems of Tongxiang Based on Remote Sensing [D]. Hangzhou: Zhejiang University, 2020.
[33] 李辉. 中国人口城市化综述[J]. 人口学刊, 2003(6): 51 − 58.

LI Hui. Survey of Population Urbanization in China [J]. Population Journal, 2003(6): 51 − 58.
[34] 邵玉龙, 许有鹏, 马爽爽. 太湖流域城市化发展下水系结构与河网连通变化分析——以苏州市中心区为例[J]. 长江流域资源与环境, 2012, 21(10): 1167 − 1172.

SHAO Yulong, XU Youpeng, MA Shuangshuang. Change of river structure and stream network connectivity in the Taihu Lake Basin under the urbanization development: a case study in urban Suzhou [J]. Resources and Environment in the Yangtze Basin, 2012, 21(10): 1167 − 1172.
[35]

YANG Liu, XU Youpeng, HAN Longfei, et al. River networks system changes and its impact on storage and flood control capacity under rapid urbanization [J]. Hydrological Processes, 2016, 30(13): 2401 − 2412.
[36] 韩龙飞, 许有鹏, 杨柳, 等. 近50年长三角地区水系时空变化及其驱动机制[J]. 地理学报, 2015, 70(5): 819 − 827.

HAN Longfei, XU Youpeng, YANG Liu, et al. Temporal and spatial change of stream structure in Yangtze River Delta and its driving forces during 1960s−2010s [J]. Acta Geographica Sinica, 2015, 70(5): 819 − 827.