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Small diameter gravity sewers: self-cleansing conditions and aspects of wastewater quality

机译:小直径重力下水道:自清洁条件和废水质量方面

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The construction of conventional sewerage systems in small communities, with pipes laid on a uniform slope and manholes regularly spaced, is sometimes not economically feasible, because of the high costs of sewer installation. Under those circumstances, the small diameter gravity sewers (SDGS) have often proven to be substantially less costly than conventional sewers. Typically, in SDGS systems the wastewater from one or more households is discharged into an interceptor tank (or a single compartment septic tank). The settled effluent is discharged afterwards into small diameter sewers operating under gravity. In this paper, special emphasis is given to the analysis of self-cleansing conditions and to the analysis of risks of sulphide generation and occurrence of septic conditions in SDGS systems. For the evaluation of the self-cleansing conditions, the critical velocity and the critical shear stress were computed according to the Shields equation. The forecasting of dissolved oxygen concentrations and sulphide build-up along the lines, for different flow conditions, was done running an established wastewater quality model. [References: 23]
机译:由于下水道安装的高昂成本,在小社区中建设传统的下水道系统,在同一坡度上铺设管道,并定期将检修孔隔开,这在经济上有时是不可行的。在这种情况下,小直径重力下水道(SDGS)通常被证明比传统下水道的造价低得多。通常,在SDGS系统中,来自一个或多个家庭的废水被排放到拦截罐(或单个隔间化粪池)中。沉淀的废水随后被排放到在重力作用下运行的小直径下水道中。在本文中,特别强调了自清洁条件的分析,以及SDGS系统中硫化物生成和化脓条件发生风险的分析。为了评估自清洁条件,根据Shields方程计算了临界速度和临界剪切应力。使用已建立的废水质量模型,对不同流量条件下沿管线的溶解氧浓度和硫化物堆积进行了预测。 [参考:23]

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