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Considerations for the design of bottom intake systems

机译:设计底部进气系统的注意事项

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Knowing the scarcity of water in the southeast of Spain and how the rain occurs, we considered the design of intake systems in ephemeral riverbeds in order to try to capture part of the runoff flow. The intake systems generally consist of a rack located in the bottom of a river channel, so that the water collected passes down the rack and leads to the side channel. This behaviour has been studied in the laboratory by several researchers. However, due to the many effects that occur on the bars, it is not possible to analyse the whole problem of characterization with traditional methodologies. For instance, the wetted rack length necessary to collect a required flow presents important differences depending on what each author has considered relevant. Computational fluid dynamics simulations have been done to improve the knowledge of the hydraulic phenomenon observed in different laboratory experiences, for which we have previously calibrated the numerical models using laboratory results. The ANSYS CFX code was selected. Several two-equation turbulence models have been considered. The results show differences smaller than 1% in the wetted rack length, and discharge coefficients also present good agreement.
机译:了解了西班牙东南部缺水的情况以及降雨的发生方式后,我们考虑了短暂河床的进水系统设计,以试图捕获部分径流。进水系统通常由位于河道底部的架子组成,以便收集的水沿架子向下流并通向侧槽。几位研究人员已经在实验室研究了这种行为。但是,由于发生在条形上的许多影响,因此无法使用传统方法来分析整个表征问题。例如,根据每个作者认为的相关性,收集所需流量所需的湿架长度会产生重要差异。已经进行了计算流体动力学模拟,以提高对在不同实验室经验中观察到的水力现象的了解,为此,我们先前已使用实验室结果对数值模型进行了校准。选择了ANSYS CFX代码。已经考虑了几种二方程湍流模型。结果表明,湿式机架长度的差异小于1%,并且排放系数也显示出良好的一致性。

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