新闻中心

News Center

新闻中心

乐鱼,深圳后海河流域黑臭水体系统化治理方案探索 作者:汤钟,孙静,张亮,俞露,李亚,吴丹(深圳市城市规划设计研究院有限公司,广东深圳518000)

发布时间:2023-12-26

焦点提醒:深圳后海河道域黑臭水系统统化管理方案摸索 作者:汤钟,孙静,张亮,俞露,李亚,吴丹(深圳市城市计划设想研究院无限公司,广东深圳518000)中国给水排水2023年中国污水中国给水排水2023年城镇污泥处理处置技术与应用高级研讨会(第十四届)邀请函处理厂提标改造(污水处理提质增效)高级研讨会(第七届)邀请函暨征稿启事中国给水排水2023年中国污水处理厂中国给水排水2023年城镇污泥处理处置技术与应用高级研讨会(第十四届)邀请函提标改造(污水处理提质增效)高级研讨会(第七届)邀请函暨征稿启事

  • 00:00 已群发

    转动深圳后海河道域黑臭水系统统化管理方案摸索 232 1 0 1
  • 今天 09:38 已群发

    中国铁建分拆成功,国之重器横空出生避世!/国务院文件:科技奖项评定、职称评定中将列入科普工作目标 750 1 0 1
  • 礼拜一 11:32 已群发

    转动深圳市《海绵城市设想图集》的编制和思虑/中心企业最新名录 397 1 0 1
  • 礼拜日 00:00 已群发

    ​国度成长鼎新委下达中心预算内投资75亿撑持污染管理项目扶植/重磅:两年夜央企重组归并,“巨无霸”央企降生! 1041 1 0 1
  • 礼拜六 00:00 已群发

    基在降雨情形摹拟的排水系统内涝风险评估与阐发 / 城镇污水管理举措措施补短板近况和对策 670 2 0 2
  • 礼拜五 10:26 已群发

    BioFIMag®工艺在紧凑、应急型污水厂中的利用 248 1 0 1
  • 礼拜四 11:56 已群发

    基在污水系统提质增效的老旧城区黑臭水体整治 483 2 0 1
    • 00:00 已群发

      转动深圳后海河道域黑臭水系统统化管理方案摸索 232 1 0 1
    • 今天 09:38 已群发

      中国铁建分拆成功,国之重器横空出生避世!/国务院文件:科技奖项评定、职称评定中将列入科普工作目标 750 1 0 1
    • 礼拜一 11:32 已群发

      转动深圳市《海绵城市设想图集》的编制和思虑/中心企业最新名录 397 1 0 1
    • 礼拜日 00:00 已群发

      ​国度成长鼎新委下达中心预算内投资75亿撑持污染管理项目扶植/重磅:两年夜央企重组归并,“巨无霸”央企降生! 1041 1 0 1
    • 礼拜六 00:00 已群发

      基在降雨情形摹拟的排水系统内涝风险评估与阐发 / 城镇污水管理举措措施补短板近况和对策 670 2 0 2
    • 礼拜五 10:26 已群发

      BioFIMag®工艺在紧凑、应急型污水厂中的利用 248 1 0 1
    • 礼拜四 11:56 已群发

      基在污水系统提质增效的老旧城区黑臭水体整治 483 2 0 1
      • 首 页
      • 期刊引见
      • 编委会
      • 投稿须知
      • 文章查询
      • 学术会议
      • 告白合作
      • 刊行定阅
      • 在线留言
      • English上一篇下一篇PDF下载[1]汤钟,孙静,张亮,等.深圳后海河道域黑臭水系统统化管理方案摸索[J].中国给水排水,2020,36(24):28-33. TANG Zhong,SUN Jing,ZHANG Liang,et al.Exploration of Systematic Control Scheme of Black and Smelly Water Body in Houhai River Basin of Shenzhen City[J].China Water & Wastewater,2020,36(24):28-33.点击复制

        深圳后海河道域黑臭水系统统化管理方案摸索中国给水排水[ISSN:1000-4062/CN:12-1073/TU]卷:第36卷期数:2020年第24期页码:28-33栏目:出书日期:2020-12-17
        Title:
        Exploration of Systematic Control Scheme of Black and Smelly Water Body in Houhai River Basin of Shenzhen City
        作者:
        汤钟,孙静,张亮,俞露,李亚,吴丹
        (深圳市城市计划设想研究院无限公司,广东深圳518000)
        Author(s):
        TANG Zhong,SUN Jing,ZHANG Liang,YU Lu,LI Ya,WU Dan
        (Urban Planning & Design Institute of Shenzhen, Shenzhen 518000, China)
        要害词:
        海绵城市;水情况;黑臭水体;后海河;模子评估
        Keywords:
        sponge city;water environment;black and smelly water body;Houhai River;model evaluation
        摘要:
        高密度建成区黑臭水体管理受限在空间不足,管理难度年夜且难以长制久清。以深圳市南山区后海河黑臭水体水情况管理方案为例,以系统化思惟对水情况管理进行全体斟酌。在对流域污染物来历进行深切阐发的根本上,成立了近况污染物定量阐发方式;按照污染物的量化阐发,成立“控源截污、内源管理、生态修复、活水提质”的管理手艺线路;在管理进程中,同步落实海绵城市等理念;采纳驳岸生态晋升、排水口景不雅处置等办法,完美河流生态系统。对方案实行结果进行的模子评估注解,各项目标都可到达既定方针。该项目方案可为其他近似地域的水情况管理供给经验参考。
        Abstract:
        The treatment of black and smelly water in high-density built-up area is limited by space, and it is difficult to control and maintain the effect for a long period of time. Taking the water environment treatment scheme of Houhai River in Nanshan District of Shenzhen as an example, this paper considers the treatment of water environment as a whole with systematic thinking. On the basis of in-depth analysis of the sources of pollutants in the basin, the quantitative analysis method of current pollutants in the present situation was established, and a technical route of “pollution control and interception, endogenous treatment, ecological restoration and raising quality of living water” was established according to the quantitative analysis of pollutants. In the process of treatment, the concept of sponge city should be implemented simultaneously; the river ecosystem should be improved by revetment ecological promotion, drainage outlet landscape treatment and so on. The implementation effect evaluated by model showed that all indicators could reach the design goal. The purpose of this paper could provide reference for water environment treatment schemes in other similar areas.

        类似文献/References:

        [1]吴耀珊,计波,刘卓成.透水砖材料和下垫面临城市雨洪的影响[J].中国给水排水,2018,34(21):133.WU Yao shan,JI Bo,LIU Zhuo cheng.Influence of Permeable Brick Material and Underlying Surface on Urban Stormwater[J].China Water & Wastewater,2018,34(24):133.[2]汤忠,张亮,俞露,等.南边某滨海机场海绵扶植策略摸索[J].中国给水排水,2018,34(20):1.TANG Zhong,ZHANG Liang,YU Lu,et al.Exploration on the Sponge Construction Strategies of a Coastal Airport in South China[J].China Water & Wastewater,2018,34(24):1.[3]李胜海,陈思,白静,等.山地城市市政道路低影响开辟雨水系统设想与建立[J].中国给水排水,2018,34(20):60.LI Sheng hai,CHEN Si,BAI Jing,et al.Design and Construction of Stormwater Systems for Low-Impact-Development of Municipal Roads in Mountainous City[J].China Water & Wastewater,2018,34(24):60.[4]许可,郭迎新,吕梅,等.对完美我国海绵城市计划设想系统的思虑[J].中国给水排水,2020,36(12):1.XU Ke,GUO Ying-xin,Lü Mei,et al.Thinking on Improving Sponge City Planning and Design System in China[J].China Water & Wastewater,2020,36(24):1.[5]厉帅,周凌,郝新宇.海绵城市计划中分歧类型城市水情况整治策略[J].中国给水排水,2020,36(12):31.LI Shuai,ZHOU Ling,HAO Xin-yu.Water Environment Renovation Strategies for Different Types of Cities in Sponge City Planning[J].China Water & Wastewater,2020,36(24):31.[6]杨文辉,张伟,张海行,等.常州海绵城市试点区扶植中的闲置用地近远期管控[J].中国给水排水,2020,36(14):1.YANG Wen-hui,ZHANG Wei,ZHANG Hai-xing,et al.Short-and Long-term Control of Idle Land in the Construction of Changzhou Sponge City Pilot Area[J].China Water & Wastewater,2020,36(24):1.[7]聂超,周丹,林韵婕,等.建筑与小区低影响开辟设想问题和对策[J].中国给水排水,2020,36(14):6.NIE Chao,ZHOU Dan,LIN Yun-jie,et al.Design Problems and Countermeasures of Low Impact Development in Buildings and Communities[J].China Water & Wastewater,2020,36(24):6.[8]张伟,王翔.基在海绵城市扶植理念的慈城新城水平安系统建立[J].中国给水排水,2020,36(14):12.ZHANG Wei,WANG Xiang.Construction of Cicheng New Town Drainage Safety System Based on Sponge City Concept[J].China Water & Wastewater,2020,36(24):12.[9]张净,崔建军,蒋礼兵,等.基在窄带物联网的海绵城市滤水养鱼智能监控系统设想[J].中国给水排水,2020,36(14):61.ZHANG Jing,CUI Jian-jun,JIANG Li-bing,et al.Design of Intelligent Monitoring System for Fish Culture in Filtered Water of Sponge City Based on Narrow-band Internet of Things (NB-IoT)[J].China Water & Wastewater,2020,36(24):61.[10]李国君,王永,梁振凯,等.海绵城市扶植区域化结果评估切磋[J].中国给水排水,2020,36(14):76.LI Guo-jun,WANG Yong,LIANG Zhen-kai,et al.Evaluation of Regionalized Effect of Sponge City Construction[J].China Water & Wastewater,2020,36(24):76.

        更新日期/Last Update:2020-12-17

        中国给水排水杂志社官方网所有材料均源在网上的共


沪公网安备 31011002002837号