首页> 外文会议>Water Environment Federation annual technical exhibition and conference >SELF-CLEANING CONSOLIDATION CONDUIT IS OPTIMIZED BY SCADA CONTROLLED FLUSHING CHAMBERS FOR AUGUSTA, MAINE'S LARGEST COMBINED SEWER OVERFLOWS (CSOs) TO WWTF
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SELF-CLEANING CONSOLIDATION CONDUIT IS OPTIMIZED BY SCADA CONTROLLED FLUSHING CHAMBERS FOR AUGUSTA, MAINE'S LARGEST COMBINED SEWER OVERFLOWS (CSOs) TO WWTF

机译:自清洁整合管道由SCADA控制冲洗室优化,用于奥古斯塔,缅因州最大的合并下水道溢出(CSOS)到WWTF

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The Augusta Sanitary District is implementing the second of its four-phase Long-Term Control Plan for the abatement of its combined sewer overflow discharges. The current program focuses on the West Subsystem with the key component being the West Side Consolidation Conduit (WSCC). Numerous challenges were encountered during the design including: narrow project corridor; active railroad; steep and unstable banks; and coordination with a rails-to-trail project. Additionally, instrumentation and SCADA needed to be designed to control outlet flows from the WSCC to the WWTF, so that the transport conduit acted in a storage mode during high rate wet-weather events. Complicating this control need, the instrumentation also needed to monitor and regulate a storm flow connection to the WSCC, but only for "first-flush", so that other CSOs being intercepted would not be hydraulically exempted from being captured. These, and other project objective and design considerations, are detailed in the paper.
机译:奥古斯塔卫生区正在实施其四相长期控制计划的第二个,以减轻其合并的下水道溢出排放。目前的程序侧重于西部子系统,关键组件是西侧整理管道(WSCC)。在设计期间遇到了许多挑战,包括:狭窄的项目走廊;活跃铁路;陡峭和不稳定的银行;并与Rails-Trave项目协调。此外,需要设计用于控制从WSCC到WWTF的出口流量的仪器和SCADA,使得运输管道在高速湿天气事件期间以存储模式作用。复杂这种控制需求,还需要仪器来监测和调节与WSCC的风暴流量连接,而是仅用于“第一冲洗”,因此被拦截的其他CSO不会被捕获。本文详述了这些等项目目标和设计考虑因素。

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