Combined sewer overflow warning and prevention system

    公开(公告)号:US09631356B2

    公开(公告)日:2017-04-25

    申请号:US13874446

    申请日:2013-04-30

    摘要: A monitoring and alert methodology ascertains conditions that may result in a combined sewer overflow (CSO) event. The method employs a semantic model of a combined sewer system that includes specification information describing the components of the combined sewer system. Sensors distributed throughout the components of the combined sewer system sense operating parameter information for those components. A monitoring and alerting (MA) information handling system (IHS) receives operating parameter information from the sensors. The MA IHS analyzes the operating parameter information received from the sensors together with the specification information in the semantic model of the combined sewer system to determine if a combined sewer overflow (CSO) event is possible. The MA IHS generates an alert to provide notification of a possible CSO event if the MA IHS determines that a CSO event is possible. In this manner, an operator may take early corrective action before a CSO event occurs.

    Modular ducting sections and networked utilities ducting system formed therefrom
    4.
    发明授权
    Modular ducting sections and networked utilities ducting system formed therefrom 有权
    由其形成的模块化管道段和网络公用事业管道系统

    公开(公告)号:US09016976B2

    公开(公告)日:2015-04-28

    申请号:US13575992

    申请日:2011-07-29

    摘要: This invention provides a modular ducting section and a networked utilities ducting system and rain and road water management system formed from two or more modular ducting sections laying end-to-end. Each modular ducting section comprises open-topped utility channels for carrying utility service supply lines such as electricity, gas, water, or communications, an open-topped catchment channel for carrying rain water captured from a building structure or garden, and a supply channel for supplying an end user with utility services via a supply line, while also allowing the end user to feed an end-user generated utility supply back into the corresponding utility service supply line via a return line. Each modular ducting section further comprises a road water runoff flange and a main channel cover, which when combined, form a curb-side structure that functions to keep any contaminated road water from the reusable rain water collected in the catchment channel.

    摘要翻译: 本发明提供了一种由两个或更多个模块化管道段组成的模块化管道部分和网络公用事业管道系统以及由雨水和路面水管理系统组成的管道系统。 每个模块化管道部分包括用于承载诸如电力,燃气,水或通信的公用事业服务供应线的开放式公用设施通道,用于承载从建筑结构或花园捕获的雨水的开放式集水道,以及用于 通过供应线向最终用户提供实用服务,同时还允许最终用户通过返回线将最终用户生成的公用电力供应回相应的公用事业服务供应线路。 每个模块化管道部分还包括道路水径流法兰和主通道盖,当组合时,形成路缘结构,其用于将污染的路面水从收集在集水道中的可重复使用的雨水中保持。

    COMBINED SEWER OVERFLOW WARNING AND PREVENTION SYSTEM
    5.
    发明申请
    COMBINED SEWER OVERFLOW WARNING AND PREVENTION SYSTEM 审中-公开
    组合式海洋溢流警告与预防系统

    公开(公告)号:US20150025868A1

    公开(公告)日:2015-01-22

    申请号:US14503337

    申请日:2014-09-30

    IPC分类号: E03F3/00

    摘要: A monitoring and alert methodology ascertains conditions that may result in a combined sewer overflow (CSO) event. The method employs a semantic model of a combined sewer system that includes specification information describing the components of the combined sewer system. Sensors distributed throughout the components of the combined sewer system sense operating parameter information for those components. A monitoring and alerting (MA) information handling system (IHS) receives operating parameter information from the sensors. The MA IHS analyzes the operating parameter information received from the sensors together with the specification information in the semantic model of the combined sewer system to determine if a combined sewer overflow (CSO) event is possible. The MA IHS generates an alert to provide notification of a possible CSO event if the MA IHS determines that a CSO event is possible. In this manner, an operator may take early corrective action before a CSO event occurs.

    摘要翻译: 监测和警报方法确定可能导致组合下水道溢出(CSO)事件的条件。 该方法采用组合式污水系统的语义模型,其包括描述组合式下水道系统的组成部分的规范信息。 分布在组合下水道系统的各个组件的传感器感测这些组件的操作参数信息。 监控和警报(MA)信息处理系统(IHS)从传感器接收操作参数信息。 MA IHS分析从传感器接收的操作参数信息以及组合下水道系统的语义模型中的规范信息,以确定是否可以组合下水道溢出(CSO)事件。 如果MA IHS确定CSO事件是可能的,MA IHS将生成警报以提供可能的CSO事件的通知。 以这种方式,操作员可以在CSO事件发生之前采取早期的纠正措施。

    Drainage management systems and methods
    6.
    发明申请
    Drainage management systems and methods 失效
    排水管理系统和方法

    公开(公告)号:US20050089373A1

    公开(公告)日:2005-04-28

    申请号:US10692507

    申请日:2003-10-24

    CPC分类号: E03F5/106 B01D17/0214

    摘要: A flow limiting inlet structure is designed to collect water or other fluids in a pool above grade, and to provide improved capture of sediments and surface pollutants such as oils and greases in the pool, while regulating the flow of water or other fluids during discharge into an outlet pipe. In a conventional storm water detention basin a vertical cylindrical discharge structure can be used to regulate the basin water depth and discharge flow rate of storm water out of the detention basin, in conjunction with the use of a specially designed baffle system that prevents the release of any greases or oils floating on the water surface while capturing any floating trash or debris.

    摘要翻译: 流量限制入口结构设计用于收集高于等级的池中的水或其他流体,并且可以改善沉积物和表面污染物(如池中的油和油脂)的捕获,同时在排放期间调节水或其它流体的流量 出口管。 在常规的雨水监视盆地中,垂直圆柱形排放结构可用于调节盆地水深和将雨水排出滞留盆地的流量,并结合使用专门设计的挡板系统,防止释放 漂浮在水面上的任何润滑脂或油,同时捕获任何浮动的垃圾或碎屑。

    Method of producing hollow structures and hollow structures
    8.
    发明授权
    Method of producing hollow structures and hollow structures 失效
    生产中空结构和中空结构的方法

    公开(公告)号:US4693635A

    公开(公告)日:1987-09-15

    申请号:US522169

    申请日:1983-07-15

    申请人: Marcel Matiere

    发明人: Marcel Matiere

    摘要: A method for producing cylindrical hollow bodies bearing on the ground along one generatrice, of large cross sectional area, by assembling on site previously prepared longitudinal components.The method consists in determining by calculation the optimum cross-sectional profile of said hollow body as a function of known parameters concerning the site, conditions of use of said hollow body and its inherent characteristics; divising said optimum cross-sectional profile into adjacent sections each corresponding to a longitudinal component of the hollow body and together providing a substantially continuous interior surface; and giving the transverse wall section of at least some of said components a variable thickness for adapting the latter component to the stresses to be exerted thereon.

    摘要翻译: PCT No.PCT / FR82 / 00177 Sec。 371日期1983年7月15日 102(e)日期1983年7月15日PCT提交1982年10月29日PCT公布。 出版物WO83 / 01823 日期:1983年5月26日。一种用于生产圆形中空体的方法,该方法通过在现场预先制备的纵向部件上组装而沿着具有大截面积的一个主体在地面上承载。 该方法包括通过计算确定所述中空体的最佳横截面轮廓作为关于所述中空体的部位,使用条件及其固有特性的已知参数的函数; 将所述最佳横截面轮廓划分成相应的部分,每个对应于所述中空体的纵向部分并且一起提供基本上连续的内表面; 并且给予所述部件中的至少一些部件的横壁部分具有可变的厚度,以使后者部件适应于施加在其上的应力。

    BLOCKAGE DETECTION USING MACHINE LEARNING

    公开(公告)号:US20210088369A1

    公开(公告)日:2021-03-25

    申请号:US17031091

    申请日:2020-09-24

    申请人: ADS LLC

    发明人: Daniel Redmond

    摘要: One or more techniques and/or systems are disclosed for detecting the presence or formation of a blockage in a sewer system using a machine learning (ML) model. The ML model may be trained using a supervised learning method; and may be used to analyze various inputs from a sewer system to automatically sense developing sewer blockages. The systems and techniques described herein may also indicate the type of blockage that is forming, such as silt accumulation; sediment buildup; ragging; root intrusion; fats, oils, and grease (FOG), etc.) prior to a full blockage to allow preventative cleaning operations.

    Method of priming a drainage apparatus for siphoning liquid and drainage apparatus

    公开(公告)号:US10392792B2

    公开(公告)日:2019-08-27

    申请号:US15123871

    申请日:2015-03-03

    申请人: Boon Pen Chua

    发明人: Boon Pen Chua

    摘要: A method 200 for priming a drainage apparatus 100 comprises directing liquid into the conduit arrangement at 202 via the liquid injection inlet 106b12 to fill up most of the conduit arrangement as controlled by the valves' configuration; directing liquid into the first reservoir 102 at 206 to enable more liquid to enter into the conduit arrangement via the first opening 112 and at 208, to flood the conduit arrangement to form a continuous liquid flow path which extends from the first opening 112 up to at least the second opening 114, the continuous liquid flow path creating a siphon; and with the first opening 112 kept below the liquid's surface level in the first reservoir 102, stopping the flow of liquid into the first reservoir 102 to achieve a state of equilibrium of the siphon at 210 to prime the conduit arrangement.