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Physical and Computational Modeling of Mixing Processes in Potable Water Network Junctions

机译:饮用水管网节点混合过程的物理和计算模型

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Water quality in potable water distribution systems has been especially studied from the point of view of mixing processes in network junctions. Programs such as EPANET usually assume that there is complete mixing. However, researchers such as Romero-Gomez et al. have questioned this assumption and conducted a series of experiments which showed mixing within nodes isn't actually complete. In the present research, we witnessed that mixture processes depend on contact as well as physical and temporal interaction between incident flows. This may vary according to entry flow relation but also according to the junction's configuration type and its internal geometry. A physical modeling was conducted at a Hydraulic Laboratory in Universidad de los Andes, Bogota, Colombia. A computational modeling was also done, and it used the computational fluid dynamics (CFD) methodology in order to simulate different node configurations. Qualitative and quantitative experiments were conducted for the physical modeling; for the first case, we used potassium permanganate as tracer and for the later we measured chlorine concentration in all pipes.
机译:从网络连接处的混合过程的角度,特别研究了饮用水分配系统中的水质。诸如EPANET之类的程序通常会假设已完全混合。但是,诸如Romero-Gomez等人的研究人员。对这个假设提出了质疑,并进行了一系列实验,结果表明节点内的混合实际上并没有完成。在本研究中,我们目睹了混合过程取决于接触以及入射流之间的物理和时间相互作用。这可以根据入口流量关系而变化,但也可以根据路口的配置类型及其内部几何形状而变化。在哥伦比亚波哥大的德安德洛斯安第斯大学的水力实验室进行了物理建模。还进行了计算建模,并使用计算流体动力学(CFD)方法来模拟不同的节点配置。进行了物理建模的定性和定量实验;对于第一种情况,我们使用高锰酸钾作为示踪剂,对于第二种情况,我们测量了所有管道中的氯浓度。

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