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Unified parameter optimisation approach for leakage detection and extended-period simulation model calibration

机译:泄漏检测和长期仿真模型校准的统一参数优化方法

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摘要

Leakage detection is of great interest and significance for water utilities. There are different field testing apparatuses developed for leakage detection, but no systematic modelling approach was available for predicting the most likely leakage hotspots that might guide leakage detection crew to quickly locate exact leakage locations. In this paper, leakage is represented as pressure-dependent emitter flow at a node in a water distribution model. Leakage detection is formulated as a nonlinear parameter identification problem to search for the possible emitter node locations and the emitter coefficients while minimising the same objective function as model calibration, namely the distance between the field-observed and the model-simulated flows and hydraulic grades. Thus the leakage detection optimisation is developed as an integral component of the unified model parameter identification framework. The comprehensive methodology is applied to the water system of a district meter area (DMA) in the UK. It illustrates the effectiveness of the unified approach for both leakage hotspot detection and extended-period simulation model calibration using the real field data.
机译:泄漏检测对于自来水公司具有极大的意义和意义。开发了用于泄漏检测的不同现场测试设备,但是没有系统的建模方法可用于预测最有可能的泄漏热点,这些热点可能会指导泄漏检测人员快速定位准确的泄漏位置。在本文中,渗漏表示为水分配模型中某个节点处与压力有关的发射器流量。将泄漏检测公式化为非线性参数识别问题,以搜索可能的发射器节点位置和发射器系数,同时最小化与模型校准相同的目标函数,即实地观测到的与模型模拟的流量和水力坡度之间的距离。因此,泄漏检测优化被开发为统一模型参数识别框架的组成部分。全面的方法适用于英国的地区水表区域(DMA)的水系统。它说明了使用实地数据进行泄漏热点检测和延长周期仿真模型校准的统一方法的有效性。

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