参考文献/References:
References
[1]宗静婷. 秦岭: 中华地理的自然标识[M]. 西安: 西安出版社, 2021.
ZONG Jingting. Qinling Mountains: Natural landmark of Chinese geography[M]. Xi′an: Xi′an Publishing House, 2021.
[2]石谦飞,李昉芳,景一帆,等.双学科视角下国土空间低碳规划方法研究回溯与编制讨论[J].西部人居环境学刊,2021,36(6):134-140.
SHI Qianfei, LI Fangfang, JING Yifan, et al. Backtracking and compilation of national territorial spatial low-carbon planning from the perspective of dual disciplines[J]. Journal of Human Settlements in West China, 2021, 36(6): 134-140.
[3]赵斌,张建华,孔亚暐.基于防洪视角的传统聚落水系空间结构探析——以北方四省泉水聚落为例[J].华中建筑,2014,32(10):112-116.
ZHAO Bin, ZHANG Jianhua, KONG Yawei. Spatial and structural analysis of the water system for flood control in traditional settlements: A case study on spring settlements from 4 provinces of North in China[J]. Huazhong Architecture, 2014, 32(10): 112-116.
[4]谢晖.秦岭北麓乡村空间适应性发展模式研究[D].西安:西安建筑科技大学,2017.
XIE Hui. A study on the spatial adaptability development model of the north of the Qinling Mountains[D]. Xi′an: Xi′an Univ. of Arch. & Tech., 2017.
[5]谢晖.城市边缘浅山区乡村空间生态适应性发展模式初探[J].西安建筑科技大学学报(自然科学版),2022,54(1):95-102.
XIE Hui. A preliminary study on ecological adaptability development model of rural space in shallow mountain area of urban fringe[J]. J. of Xi′an Univ. of Arch. & Tech. (Natural Science Edition), 2022, 54(1): 95-102.
[6]鲍文.气候变化适应型城市发展战略研究[J].中国名城,2020(3):4-9.
BAO Wen. Research on the development strategy of climate change adaptable cities[J]. China Ancient City,2020(3):4-9.
[7]LAWSON G, GUARALDA M, NGUYEN P N. Water urbanism and “living with flooding”: A case study in the Mekong Delta, Vietnam[J]. Housing and Society, 2022, 49(2): 150-186.
[8]俞孔坚.构建和修复一个健康的水生态系统[J].景观设计学(中英文),2021,9(4):5-9.
YU Kongjian. Building and Restoring a Healthy Aquatic Ecosystem[J]. Landscape Architecture Frontiers, 2021, 9(4): 5-9.
[9]俞孔坚,李迪华,袁弘,等.“海绵城市”理论与实践[J].城市规划,2015,39(6):26-36.
YU Kongjian, LI Dihua, YUAN Hong, et al. “Sponge city”: Theory and practice[J]. City Planning Review, 2015, 39(6): 26-36.
[10]黄梅,乔杰,于洋,等.实践自然观下侗寨理水智慧及其生态治理启示[J].城市规划,2023,47(1):75-85.
HUANG Mei, QIAO Jie, YU Yang, et al. Water management wisdom of Dong villages and its enlightenment on ecological governance under the practical view of nature[J]. City Planning Review, 2023, 47(1): 75-85.
[11]乔杰,洪亮平,迈克·克朗.乡村小流域空间治理:理论逻辑、实践基础和实现路径[J].城市规划,2021,45(10):31-44,77.
QIAO Jie, HONG Liangping, CRANG M. Spatial governance of small catchment in rural areas: Theoretical logic, practice basis and realization path[J]. City Planning Review, 2021, 45(10): 31-44,77.
[12]ADEEL Z, SCHUSTER B, BIGAS H. What makes traditional technologies tick? a review of traditional approaches for water management in drylands[M]. Ontario: The United Nations University, 2008.
[13]袁琳.从古代都江堰灌区看本土人居生态实践思想——兼论对生态文明时代城乡规划的启发[J].城市规划,2020,44(1):63-71.
YUAN Lin. Indigenous Chinese thoughts on ecological practice of human settlements and their inspirations for urban and rural planning in the ecological civilization era: A case study of Dujiangyan irrigation region in ancient times[J]. City Planning Review, 2020, 44(1): 63-71.
[14]冷红,陈天,翟国方,等.极端气候背景下的思考:城乡建设与治水[J].南方建筑,2021(6):1-9.
LENG Hong, CHEN Tian, ZHAI Guofang, et al. Urban-rural construction and water control against the background of extreme climates[J]. South Architecture, 2021(6): 1-9.
[15]赵宏宇,陈勇越,解文龙,等.于家古村生态治水智慧的探究及其当代启示[J].现代城市研究,2018(2):40-44,52.
ZHAO Hongyu, CHEN Yongyue, XIE Wenlong, et al. A study of eco-wisdom of water governance in the Yujia ancient village and its contemporary enlightenment[J]. Modern Urban Research, 2018(2): 40-44,52.
[16]韩刘伟,林祖锐,赵之枫.旱涝灾害适应性:营建机制与当代启示——以太行山区传统村落为例[J].工业建筑,2024,54(5):107-116.
HAN Liuwei, LIN Zurui, ZHAO Zhifeng. Adaptation to droughts and floods: Construction mechanisms and contemporary enlightenment: A case study of traditional villages in Taihang Mountains[J]. Industrial Construction, 2024,54(5):107-116.
[17]黄建平,冉津江,季明霞.中国干旱半干旱区洪涝灾害的初步分析[J].气象学报,2014,72(6):1096-1107.
HUANG Jianping, RAN Jinjiang, JI Mingxia. Preliminary analysis of the flood disaster over the arid and semi-arid regions in China[J]. Acta Meteorologica Sinica, 72(6): 1096-1107.
[18]罗杨菲,杨眉.洪涝适应性景观设计的原则与策略[J].林业与生态科学,2021,36(2):198-204.
LUO Yangfei, YANG Mei. Principles and strategies of flood-adaptive landscape design[J]. Forestry and Ecological Sciences, 2021, 36(2): 198-204.
[19]吴庆洲.中国古城防洪研究[M].北京:中国建筑工业出版社,2009.
WU Qingzhou. Study on flood control in ancient Chinese Cities[M]. Beijing: China Construction Industry Press, 2009.
[20]俞孔坚,张蕾.黄泛平原古城镇洪涝经验及其适应性景观[J].城市规划学刊,2007(5):85-91.
YU Kongjian, ZHANG Lei. The flood and waterlog adaptive landscapes in ancient Chinese cities in the Yellow River Basin[J]. Urban Planning Forum, 2007(5): 85-91.
[21]李倞,宋捷.临汾-运城盆地以水为线索的传统地域景观特征和发展启示[J].风景园林,2019,26(12):28-33.
LI Liang, SONG Jie. Characteristics and development enlightenment of traditional regional landscape based on water system in Linfen-Yuncheng Basin[J]. Landscape Architecture, 2019, 26(12): 28-33.
[22]谢晖,周庆华.秦岭北麓冲洪积扇区环境影响下传统村落布点特征初探[J].干旱区资源与环境,2016,30(12):66-72.
XIE Hui, ZHOU Qinghua. Preliminary discussion on the distribution of traditional villages in alluvial-diluvial fan in the northern foot of Qinling Mountains[J]. Journal of Arid Land Resources and Environment, 2016, 30(12): 66-72.
[23]周灵国,谢伟.秦岭七十二峪[M].西安:陕西新华出版传媒集团,陕西科学技术出版社,2018.
ZHOU Lingguo, XIE Wei. 72 Valleys of the Qinling Mountains[M]. Xi′an: Shaanxi Xinhua Publishing and Media Group, Shaanxi Science and Technology Publishing House, 2018.
[24]丁俊清.温州古代居住与理水文化[J].中国名城,2017(7):71-78.
DING Junqing. Ancient Residence and Water Management Culture in Wenzhou [J]. China Ancient City, 2017(7): 71-78.
[25]欧亚鹏,李小龙,孙嘉悦.半干旱区传统村落基于理水的绿色人居营建——以关中地区涝池为例[J].城市规划,2022,46(11),116-124.
OU Yapeng, LI Xiaolong, SUN Jiayue. Green human settlement construction based on water management in traditional villages in semi-arid areas: Taking laochi in Guanzhong region as an example[J]. City Planning Review, 2022, 46(11): 116-124.
[26]BEHAILU B M, PIETIL P E, KATKO T S. Indigenous practices of water management for sustainable services: Case of Borana and Konso, Ethiopia[J]. Sage Open, 2016, 6(4):1-14.
[27]李小龙,王树声,朱玲, 等.通络:一种以水系贯通城市空间脉络的规划方法[J].城市规划,2017,41(7):89-90.