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首页> 外文期刊>Journal of Hydraulic Engineering >Accounting for Directional Devices in WDN Modeling
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Accounting for Directional Devices in WDN Modeling

机译:WDN建模中的定向设备费用

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摘要

This work presents a modification to steady-state water distribution network (WDN) simulation models to account for directional devices such as check valves (CHVs) and flow-control valves (FCVs). These devices, allowing water flow control in a definite direction, are important to manage the hydraulic system functioning over time by considering the variation of some boundary conditions (e.g., required demands and tank levels). However, the simulation models are built on the assumption that water can flow in both directions of each pipe in the hydraulic system, and the information on directionality of some devices is not automatically allowed. Thus, in WDN models, those devices are currently modeled using a heuristic approach intermixed with solving the problem of steady-state WDN analysis. For this reason, a different approach using content and cocontent theory was recently proposed to define the conditions that guarantee the existence and uniqueness of the solution. The alternative proposed in this paper presents an adjustment of the energy balance equations to account for flow-control valves. Check valves are treated as a special case of flow-control valves, whereas the directionality of pumps, which are equipped with a check valve to avoid reverse flow, is modeled by means of their implicit check valve. Once the status of such directional devices is identified, a topological analysis of the network is performed. The methodology is applied to the demand-driven and pressure-driven analysis of a WDN solved by means of the global gradient algorithm, although it could be easily extended to other algorithms.
机译:这项工作提出了对稳态水分配网络(WDN)模拟模型的修改,以解决诸如止回阀(CHV)和流量控制阀(FCV)等方向性设备的问题。这些设备允许在确定的方向上控制水流,对于通过考虑某些边界条件(例如,所需需求和水箱水位)的变化来管理液压系统随时间运行的功能非常重要。但是,仿真模型是在水可以在液压系统中的每个管道的两个方向流动的前提下建立的,并且某些设备的方向性信息不会自动获得。因此,在WDN模型中,当前使用启发式方法对这些设备进行建模,并与解决稳态WDN分析的问题混在一起。因此,最近提出了一种使用内容和共内容理论的不同方法来定义保证解决方案存在和唯一的条件。本文提出的替代方案提出了对能量平衡方程式的调整,以考虑流量控制阀。止回阀被视为流量控制阀的一种特殊情况,而配有止回阀以避免倒流的泵的方向性则通过​​其隐式止回阀进行建模。一旦确定了此类定向设备的状态,便会对网络进行拓扑分析。该方法适用于通过全局梯度算法解决的WDN的需求驱动和压力驱动分析,尽管该方法可以轻松扩展到其他算法。

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