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Experimental assessment of pressure-leakage relationship in a water distribution network

机译:给水管网压力-泄漏关系的实验评估

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The use of numerical simulations to improve the management of water distribution networks (WDNs) has dramatically increased in recent decades. Nevertheless, the modeling of leakages is still a major issue to face when setting up a model of a WDN. Because water losses increase at increasing pressure, they are usually modeled by assuming a leakage node behaves like an emitter. Unfortunately, a definitive assessment of the leakage law exponent is as yet lacking in the literature. Consequently, a field analysis was carried out on an existing WDN: (a) to assess whether the power law can effectively represent the relationship between leakage and pressure; and (b) to calculate the value of the exponent. A 3-month measurement campaign was developed, aiming at assessing the dependence of the losses to the pressure. The analysis showed that the power law equation with an exponent around 0.7 can well represent the pressure-leakage relationship.
机译:在最近的几十年中,使用数字模拟来改善水分配网络(WDN)的管理已大大增加。尽管如此,在建立WDN模型时,泄漏建模仍然是一个主要问题。由于水损失随着压力的增加而增加,因此通常通过假设泄漏节点的行为类似于发射器来对它们进行建模。不幸的是,文献中还缺乏对泄漏定律指数的确定性评估。因此,对现有的WDN进行了现场分析:(a)评估功率定律是否可以有效代表泄漏与压力之间的关系; (b)计算指数值。开展了为期三个月的测量活动,旨在评估损失对压力的依赖性。分析表明,幂律方程的指数约为0.7,可以很好地表示压力-泄漏关系。

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