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Impact of pipes networks simplification on water hammer phenomenon

机译:管网简化对水锤现象的影响

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Simplification of water supply networks is an indispensible design step to make the original network easier to be analysed. The impact of networks’ simplification on water hammer phenomenon is investigated. This study uses two loops network with different diameters, thicknesses, and roughness coefficients. The network is fed from a boundary head reservoir and loaded by either distributed or concentrated boundary water demands. According to both hydraulic and hydraulic plus water quality equivalence, three simplification levels are performed. The effect of demands’ concentration on the transient flow is checked. The transient flow is initialized by either concentrated or distributed boundary demands which are suddenly shut-off or released. WHAMO software is used for simulation. All scenarios showed that both hydraulic equivalence and demands’ concentration simplifications increase the transient pressure and flow rate. However, hydraulic plus water quality equivalence simplification produces an adverse effect. Therefore, simplifications of the networks should be done carefully. Also, it was found that pump shut-off gives the same trend of valve shut-off or release.
机译:简化供水网络是必不可少的设计步骤,可以使原始网络更易于分析。研究了网络简化对水锤现象的影响。本研究使用具有不同直径,厚度和粗糙度系数的两个回路网络。该网络从边界水库进水,并由分散的或集中的边界水需求加载。根据水力和水力加水的等效性,执行了三个简化级别。检查需求集中对瞬态流量的影响。瞬时流量由集中的或分散的边界需求初始化,这些需求突然被关闭或释放。 WHAMO软件用于仿真。所有方案都表明,当量液压等效和需求集中简化都增加了瞬态压力和流量。但是,简化水力和水质等效会产生不利影响。因此,应仔细进行网络简化。另外,还发现泵的关闭具有与阀门关闭或释放相同的趋势。

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