参考文献/References:
[1] 车伍,杨正,赵杨,等.中国城市内涝防治与大小排水系统分析[J].中国给水排水,2013, 29(16):13-19.
CHE Wu, YANG Zheng, ZHAO Yang, et al. Analysis of urban flooding control and major and minor drainage systems in China [J]. China Water and Wastewater, 2013, 29(16):13-19.(in Chinese)
[2] 王建龙,车伍,易红星.基于低影响开发的城市雨洪控制与利用方法[J].中国给水排水,2009,25(14):6-9,16.
WANG Jianlong, CHE Wu, YI Hongxing. Low impact development for urban stormwater and flood control and utilization [J]. China Water and Wastewater, 2009, 25(14): 6-9, 16.(in Chinese)
[3] 刘建,龚小强,任心欣,等.深圳市海绵城市的建设与创新[J].深圳大学学报理工版,2020,37(4):334-346.
LIU Jian, GONG Xiaoqiang, REN Xinxin, et al. Sponge city construction and innovation in Shenzhen [J]. Journal of Shenzhen University Science and Engineering, 2020, 37(4): 334-346.(in Chinese)
[4] 彭世瑾,胡爱兵,史敬华,等.基于深圳典型片区海绵城市监测评估的思考[J].深圳大学学报理工版,2021,38(1):1-9.
PENG Shijin, HU Aibing, SHI Jinghua, et al. Reflection on the sponge city monitoring and evaluation in Shenzhen [J].Journal of Shenzhen University Science and Engineering, 2021, 38(1): 1-9.(in Chinese)
[5] 杨亚红,闫俊江,蔚阳,等.校园低影响开发渗蓄性能及成因模拟分析[J].深圳大学学报理工版,2020,37(4):362-371.
YANG Yahong, YAN Junjiang, YU Yang, et al. Simulation analysis of infiltration performance and cause of low impact development in university campus [J].Journal of Shenzhen University Science and Engineering, 2020, 37(4): 362-371.(in Chinese)
[6] 唐双成,罗纨,贾忠华,等.雨水花园对暴雨径流的滞留效果[J].水科学进展,2015,26(6):787-794.
TANG Shuangcheng, LUO Wan, JIA Zhonghua,et al. Effect of rain gardens on storm runoff reduction [J]. Advances in Water Science, 2015, 26(6): 787-794.(in Chinese)
[7] SHRESTHA P, HURLEY S E, WEMPLE B C. Effects of different soil media, vegetation, and hydrologic treatments on nutrient and sediment removal in roadside bioretention systems [J]. Ecological Engineering, 2018, 112: 116-131.
[8] 李海燕,魏鹏,贾朝阳,等.渗排植被浅沟应用于处置路面径流案例分析[J].环境工程学报,2014, 8(3):821-826.
LI Haiyan, WEI Peng, JIA Chaoyang, et al. Case analysis of grass swale-perforated pipe system in treating road runoff [J].Chinese Journal of Environmental Engineering, 2014, 8(3): 821-826.(in Chinese)
[9] DREELIN E A, FOWLER L, RONALD C C. A test of porous pavement effectiveness on clay soils during natural storm events [J]. Water Research, 2006, 40(4): 799-805.
[10] GAO Jie, WANG Rusong, HUANG Jinlou, et al. Application of BMP to urban runoff control using SUSTAIN model: case study in an industrial area [J]. Ecological Modelling, 2015, 318: 177-183.
[11] HUANG Tielan, WANG Yunpeng, ZHANG Jinlan. Simulation and evaluation of low impact development of urban residential district based on SWMM and GIS [C]// IOP Conference Series: Earth and Environmental Science, [s.l.]: IPO Publishing Ltd., 2017, 74(1): 012009.
[12] 段明印,李传奇,韩典乘,等.基于暴雨管理模型(SWMM)的水生态小区低影响开发(LID)技术效果模拟及评估[J].净水技术,2018,37(2):31-37.
DUAN Mingyin, LI Chuanji, HAN Diancheng,et al. Simulation and assessment of LID technological benefit for water ecological community based on SWMM model [J]. Water Purifcation Technology, 2018, 37(2): 31-37.(in Chinese)
[13] XIA Jun, WANG Hongping, STANFORD R L, et al.Hydrologic and water quality performance of a laboratory scale bioretention unit [J]. Frontiers of Environmental Science and Engineering, 2017, 12(1): 14.
[14] 景瑞瑛,卢巧慧,黄奕龙,等.城市更新区海绵改造对降雨径流的控制研究[J].中国水利,2021(5):43-45,39.
JING Ruiying, LU Qiaohui, HUANG Yilong, et al. Study on control of rainfall runoff by sponge transformation in urban renewal zones [J].China Water Resources, 2021(5): 43-45, 39.(in Chinese)
[15] HOOD M J, CLAUSEN J C, WARNER G S. Comparison of stormwater lag times for low impact and traditional residential development [J]. Journal of the American Water Resources Association, 2007, 43(4): 1036-1046.
[16] HUANG C L, HSU N-S, LIU H-J, et al. Optimization of low impact development layout designs for megacity flood mitigation [J]. Journal of Hydrology, 2018, 564: 542-558.
[17] GUO Xiaochen, GUO Qizhong, ZHOU Zikai, et al. Degrees of hydrologic restoration by low impact development practices under different runoff volume capture goals [J]. Journal of Hydrology, 2019, 578: 124069.
[18] DINGMAN S L, Physical hydrology [M]. 2nd ed. New York, USA: Macmillan, 2002.
[19] GOLDEN H E, HOGHOOGHI N. Green infrastructure and its catchment‐scale effects: an emerging science [J]. Wires Water, 2018, 5(1): 1254.
[20] BORTOLINI L, ZANIN G. Hydrological behaviour of rain gardens and plant suitability: a study in the Veneto plain (north-eastern Italy) conditions [J]. Urban Forestry and Urban Greening, 2019, 37: 74-86.
[21] 王金鑫.基于SWMM住宅小区LID措施降雨径流削峰及控污功效研究[D]. 武汉:武汉理工大学,2015.
WANG Jinxin. Research for the effect of controlling pollution and peak runoff in residential area based on SWMM [D]. Wuhan: Wuhan University of Technology, 2015.(in Chinese)
[22] 蔡庆拟,陈志和,陈星,等.低影响开发措施的城市雨洪控制效果模拟[J].水资源保护,2017,33(2):31-36.
CAI Qingni, CHEN Zhihe, CHEN Xing, et al. Simulation of control efficiency of low impact development measure for urban stormwater [J]. Water Resources Protection, 2017, 33(2): 31-36.(in Chinese)
[23] 朱培元,傅春,肖存艳.基于SWMM的住宅区多LID措施雨水系统径流控制[J].水电能源科学,2018,36(3):10-13.
ZHU Peiyuan, FU Chun, XIAO Cunyan. Runoff control of multiple LID facilities rainwater drainage system in residential area based on SWMM [J]. Water Resources and Power, 2018, 36(3): 10-13.(in Chinese)
[24] 周亚玲,叶兴成,王飞,等.低影响开发措施综合布设条件下区域径流削减效果[J]. 水电能源科学,2018,36(4):18-21.
ZHOU Yaling, YE Xingcheng, WANG Fei, et al. Reduction effect of regional runoff under conditions of comprehensive layout of low impact development [J]. Water Resources and Power, 2018, 36(4): 18-21.(in Chinese)
[25] 张曼,周可可,张婷,等.城市典型LID措施水文效应及雨洪控制效果分析[J].水力发电学报,2019,38(5):57-71.
ZHANG Man, ZHOU Keke, ZHANG Ting, et al. Hydrological responses and stormwater control effects of typical urban LID measures [J]. Journal of Hydroelectric Engineering, 2019, 38(5): 57-71.(in Chinese)
相似文献/References:
[1]陈飞勇.利用自然力量建设“海绵城市”专题研究序言[J].深圳大学学报理工版,2020,37(4):331.[doi:10.3724/SP.J.1249.2020.04331]
CHEN Feiyong.Preface to the special research on building the sponge city by natural power[J].Journal of Shenzhen University Science and Engineering,2020,37(2):331.[doi:10.3724/SP.J.1249.2020.04331]
[2]刘建,龚小强,任心欣,等.深圳市海绵城市的建设与创新[J].深圳大学学报理工版,2020,37(4):334.[doi:10.3724/SP.J.1249.2020.04334]
LIU Jian,GONG Xiaoqiang,REN Xinxin,et al.Sponge city construction and innovation in Shenzhen[J].Journal of Shenzhen University Science and Engineering,2020,37(2):334.[doi:10.3724/SP.J.1249.2020.04334]
[3]刘安,李玉清,郭奇聪,等.深圳典型道路原位模拟雨水生物毒性评价分析[J].深圳大学学报理工版,2020,37(4):355.[doi:10.3724/SP.J.1249.2020.04355]
LIU An,LI Yuqing,GUO Qicong,et al.Biotoxicity assessment of in-situ simulated stormwater runoff on typical urban roads in Shenzhen[J].Journal of Shenzhen University Science and Engineering,2020,37(2):355.[doi:10.3724/SP.J.1249.2020.04355]
[4]彭世瑾,胡爱兵,史敬华,等.基于深圳典型片区海绵城市监测评估的思考[J].深圳大学学报理工版,2021,38(1):1.[doi:10.3724/SP.J.1249.2021.01001]
PENG Shijin,HU Aibing,SHI Jinghua,et al.Reflection on the sponge city monitoring and evaluation in Shenzhen[J].Journal of Shenzhen University Science and Engineering,2021,38(2):1.[doi:10.3724/SP.J.1249.2021.01001]
[5]吴亚男,孔露霆,任心欣,等.海绵城市排水分区绩效达标规划实施路径探索——以深圳市国家试点区域某排水分区为例[J].深圳大学学报理工版,2021,38(1):10.[doi:10.3724/SP.J.1249.2021.01010]
WU Yanan,KONG Luting,REN Xinxin,et al.Exploration on a planning and implementation method of reaching the sponge city performance standard at catchment level: taking a catchment in national pilot area of Shenzhen as an example[J].Journal of Shenzhen University Science and Engineering,2021,38(2):10.[doi:10.3724/SP.J.1249.2021.01010]
[6]刘建,刘派,王晓雷,等.深圳地铁长圳车辆段海绵城市设施设计与施工[J].深圳大学学报理工版,2021,38(1):20.[doi:10.3724/SP.J.1249.2021.01020]
LIU Jian,LIU Pai,WANG Xiaolei,et al.Design and construction of sponge city facilities in Changzhen depot of Shenzhen metro[J].Journal of Shenzhen University Science and Engineering,2021,38(2):20.[doi:10.3724/SP.J.1249.2021.01020]
[7]杨亚红,杨兴峰,闫俊江,等.基于Kriging插值的校园内涝模拟与模型优选[J].深圳大学学报理工版,2021,38(1):27.[doi:10.3724/SP.J.1249.2021.01027]
YANG Yahong,YANG Xingfeng,YAN Junjiang,et al.Campus waterlogging simulation and model preference based on Kriging interpolation[J].Journal of Shenzhen University Science and Engineering,2021,38(2):27.[doi:10.3724/SP.J.1249.2021.01027]
[8]李笑玥,秦华鹏,王凡,等.生物滞留池微生物种群的硝化反硝化功能研究——以深圳市为例[J].深圳大学学报理工版,2021,38(1):36.[doi:10.3724/SP.J.1249.2021.01036]
LI Xiaoyue,QIN Huapeng,WANG Fan,et al.Nitrification and denitrification functions of microbial population in bioretention cells: a case study of Shenzhen[J].Journal of Shenzhen University Science and Engineering,2021,38(2):36.[doi:10.3724/SP.J.1249.2021.01036]
[9]蔡业钊,刘东煊,刘建,等.基于实地监测的新型粒状海绵介质土的性能研究[J].深圳大学学报理工版,2021,38(1):45.[doi:10.3724/SP.J.1249.2021.01045]
CAI Yezhao,LIU Dongxuan,LIU Jian,et al.Performance of innovative granular sponge city growing media based on field monitoring[J].Journal of Shenzhen University Science and Engineering,2021,38(2):45.[doi:10.3724/SP.J.1249.2021.01045]
[10]冉杨涛,吕伟娅,袁校柠.水资源综合利用专项规划评估体系构建及应用[J].深圳大学学报理工版,2021,38(4):358.[doi:10.3724/SP.J.1249.2021.04358]
RAN Yangtao,LV Weiya,and YUAN Xiaoning.Establishment and application of special plan evaluation system for comprehensive utilization of water resources[J].Journal of Shenzhen University Science and Engineering,2021,38(2):358.[doi:10.3724/SP.J.1249.2021.04358]