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Clogging In Intermittently Dosed Sand Filters Used For Wastewater Treatment

机译:用于废水处理的间歇式滤砂器堵塞

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Clogging in intermittent sand filter (ISF) systems was analyzed using an unsaturated flow model coupled with a reactive transport model. Based on the results of a model sensitivity analysis, several variables were determined to be important in the clogging phenomena observed in ISFs, including hydraulic loading rate, influent chemical oxygen demand (COD) concentration, filter dosing frequency, and time of operation. Several modes of operation were identified that minimize the growth of bacteria at the filter surface. Following the sensitivity analysis, several case studies where ISF clogging was documented were simulated using the model. The results from the case study model simulations were found to be correlated with the total suspended solids loading rate (TSSLR) at the point of clogging. A model was developed that relates biomass development at the surface of ISFs with the TSSLR that can be sustained without clogging. The engineering significance of the model is presented in terms of operational and design considerations.
机译:使用不饱和流模型与反应性输运模型相结合,分析了间歇式砂滤器(ISF)系统中的堵塞情况。根据模型敏感性分析的结果,确定了在ISF中观察到的堵塞现象中很重要的几个变量,包括液压负荷率,进水化学需氧量(COD)浓度,过滤器加药频率和运行时间。确定了几种操作模式,可最大程度地减少过滤器表面细菌的生长。在进行敏感性分析之后,使用该模型对记录了ISF堵塞的几个案例进行了模拟。案例研究模型仿真的结果被发现与堵塞点的总悬浮固体装载率(TSSLR)相关。建立了一个模型,该模型将ISF表面的生物质发育与TSSLR相关联,可以持续而不会发生堵塞。该模型的工程意义从操作和设计方面考虑。

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