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Case Study: Fort Wayne’s Hydraulic Model Recalibration and its Application for Real Time Control Evaluations

机译:案例研究:韦恩堡的液压模型重新校准及其实时控制评估的应用

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This paper will provide a case study on the efforts from City Utilities at City of Fort Wayne, Indiana (CU) in keeping its more than decade old collection system hydraulic model current to support various system analyses needs, and example benefits the CU realized as a result. One primary need is to support the facilities planning and design of the combined sewer overflow (CSO) control projects to support the City’s Long Term Control Plan (LTCP) and its Consent Decree (CD) with the State and Federal regulatory agencies. CU recognized that the past investments made in developing the hydraulics model require ongoing maintenance to reap full returns and to cost-effectively implement their rather expensive CSO LTCP and sanitary system improvements. The CU’s hydraulic model was originally developed and calibrated in the mid-1990s, to support LTCP development and sanitary sewer planning activities. CU started an effort to update their hydraulic model in 2009 and completed in 2011. As part of this effort, CU’s System Wide Interceptor Model (SWIM) was recalibrated and baseline performance in the combined and sanitary sewer system was confirmed. This effort was called the System Wide Interceptor Hydraulic Model Recalibration project, which consists of extensive field data collection, model update, expansion, and enhancements. In addition, CU completed various detailed CSO subbasin model calibration effort to support ongoing CSO LTCP project implementations. Collectively, the current hydraulic model has the most-up-to-date representation of the detailed interceptor system and CSO subbasins. After successful completion of the collection system hydraulic model recalibration effort, the model was applied for various system improvement projects. One of such applications includes the real time control evaluation to identify in-system storage opportunities in the existing collection systems. This paper will also describe an example of recalibrated model application that focus on the real time control evaluations.
机译:本文将在保持其超过十年的老收集系统水力模型电流以支持各种系统分析需求提供从市公用事业在市印第安纳州韦恩堡(CU)的努力的情况下研究,例如有利于实现为在CU结果。一个主要的需求是支持设施规划和综合下水道溢流(CSO)控制项目的设计,支持城市的长期控制计划(LTCP),并同意法令(CD)与州和联邦监管机构。 CU认识到,在发展水力模型进行的以往的投资需要不断保养收获全收益和成本有效地实现其相当昂贵CSO LTCP和卫生系统的改进。铜的水力模型最初是在90年代中期校准,支持LTCP发展和下水道规划活动。 CU开始努力,以更新2009年的水力模型,并在2011年完成了作为这项努力的一部分,CU的全系统的拦截器模型(SWIM)的重新校准,并在合并和下水道系统的基准性能得到了证实。这项工作被称为,全系统拦截水力模型重新校准项目,其中包括大量的现场数据采集,模型更新,扩展和增强。此外,CU完成各种详细CSO子流域模型校准工作,以支持正在进行的CSO LTCP项目的实施。总的来说,目前的水力模型有详细的拦截系统和CSO次盆地的最先进的日期表示。收集系统水力模型校准工作的成功完成后,该模型适用于各种系统改造项目。一个这样的应用包括实时控制评估,以确定在现有的收集系统中的系统存储的机会。本文还将描述重新校准模型应用的一个例子是专注于实时控制的评价。

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