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Shaping Streamflow Using a Real-Time Stormwater Control Network

机译:使用实时雨水控制网络调整流量

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摘要

“Smart” water systems are transforming the field of stormwater management by enabling real-time monitoring and control of previously static infrastructure. While the localized benefits of active control are well-established, the potential for system-scale control of watersheds is poorly understood. This study shows how a real-world smart stormwater system can be leveraged to shape streamflow within an urban watershed. Specifically, we coordinate releases from two internet-controlled stormwater basins to achieve desired control objectives downstream—such as maintaining the flow at a set-point, and generating interleaved waves. In the first part of the study, we describe the construction of the control network using a low-cost, open-source hardware stack and a cloud-based controller scheduling application. Next, we characterize the system’s control capabilities by determining the travel times, decay times, and magnitudes of various waves released from the upstream retention basins. With this characterization in hand, we use the system to generate two desired responses at a critical downstream junction. First, we generate a set-point hydrograph, in which flow is maintained at an approximately constant rate. Next, we generate a series of overlapping and interleaved waves using timed releases from both retention basins. We discuss how these control strategies can be used to stabilize flows, thereby mitigating streambed erosion and reducing contaminant loads into downstream waterbodies.
机译:“智能”水系统通过实现对先前静态基础结构的实时监视和控制,正在改变雨水管理领域。尽管已经确立了主动控制的局部优势,但人们对流域的系统规模控制的潜力却知之甚少。这项研究表明,如何利用现实世界的智能雨水系统来塑造城市流域内的水流。具体来说,我们协调来自两个受互联网控制的雨水盆地的排放,以实现下游所需的控制目标,例如将流量保持在设定点,并生成交错波。在研究的第一部分中,我们描述了使用低成本,开源硬件堆栈和基于云的控制器调度应用程序构建控制网络的过程。接下来,我们通过确定行进时间,衰减时间以及从上游保留盆地释放的各种波的幅度来表征系统的控制能力。有了这一特性,我们就可以使用该系统在关键的下游连接处生成两个所需的响应。首先,我们生成一个设定点水位图,其中流量保持大致恒定的速率。接下来,我们使用两个滞留盆中的定时释放来生成一系列重叠和交错的波。我们将讨论如何使用这些控制策略来稳定流量,从而减轻河床侵蚀并减少进入下游水体的污染物负荷。

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