Quantitative study for the effect of water velocity on water quality change

W. Assar
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Abstract

Atmospheric reaeration process plays a key role in degradation of organic matter and self-purification processes affecting dissolved oxygen (DO) concentrations in rivers and streams. Moreover, water quality (WQ) processes can be highly dependent on flow velocity conditions. Where, highly reaeration rates are positively correlated with high flow velocity. Therefore, the present work reports deep insights on the role of flow velocity with reaeration process in the concentration of DO and biochemical oxygen demand (BOD5). This study was applied along the largest agricultural drainage water reuse project, El-Salam Canal in Egypt. The hydrodynamic (HD) characteristics and WQ parameters (DO and BOD5) along the canal were simulated using a one-dimensional HD and WQ model (MIKE 11). The simulated results indicated that the canal was deteriorated towards El-Salam Canal after mixing with El-Serw and Bahr Hadous drains. Statistical regression fitted line and Pearson correlation analysis, were performed on the simulation results of the reaeration rates with flow velocity and WQ values, indicating a significant correlation. Accordingly, water velocity should be taken into account as a key factor for describing the WQ change.
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流速对水质变化影响的定量研究
大气再通气过程在影响河流水体溶解氧(DO)浓度的有机物降解和自净化过程中起着关键作用。此外,水质(WQ)过程可以高度依赖于流速条件。其中,高再流速与高流速呈正相关。因此,本研究对再曝过程中流速对DO和生化需氧量(BOD5)浓度的影响有深入的见解。本研究应用于最大的农业排水回用工程——埃及的El-Salam运河。采用一维HD和WQ模型(MIKE 11)模拟了管道的水动力(HD)特性和WQ参数(DO和BOD5)。模拟结果表明,运河与El-Serw和Bahr haous排水混合后,向El-Salam运河恶化。对复气量与流速、WQ值的模拟结果进行了统计回归拟合线分析和Pearson相关分析,发现两者之间存在显著的相关性。因此,在描述水WQ变化时,应将水流速作为一个关键因素加以考虑。
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