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首页> 外文期刊>Agricultural Water Management >The effect of media bed characteristics and internal auxiliary elements on sand filter head loss.
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The effect of media bed characteristics and internal auxiliary elements on sand filter head loss.

机译:介质床特性和内部辅助元素对砂滤头损失的影响。

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Sand filters are beds of granular material placed in cylindrical metal containers. They are used as one approach for irrigation water filtration, mainly to remove organic and algae contaminants. The field effectiveness of these devices depends on their proper operation. The objectives of this study were to evaluate three commercial sand filter models, to study the effects of the internal auxiliary elements (the diffuser plate and the underdrains) and its interaction to sand particle size and media bed depth on the head loss as a function of the water flow velocity at clean water conditions. The experiment was divided in two parts. First, to assess the effects of the internal elements, the tanks (empty sand filter containers) head losses were characterized for water flow directions coincident with the processes of filtering and backwash. Second, the interactions of the internal elements with three sand particle sizes and three media bed depths were evaluated in light of the filtering flow direction. The results for the tanks showed that the different internal auxiliary elements significantly affected head loss, with the backwash flow direction generating values higher than the filtering flow direction for all evaluated equipment types. Additionally, it was observed that the head loss values were significantly affected by the sand particle size, the bed depth, the filtration velocity, and the interactions among these variables. The different models of internal elements generate distinct hydraulic performances of the sand filters, showing that they may exhibit different removal efficiencies for identical operating conditions. The research identifies the need to develop new procedures for the design of the internal elements of sand filters and for field operation conditions in order to improve localized irrigation performance.
机译:砂滤器是放置在圆柱形金属容器中的颗粒状物料床。它们被用作灌溉用水过滤的一种方法,主要用于去除有机物和藻类污染物。这些设备的现场有效性取决于它们的正确操作。这项研究的目的是评估三种商业砂滤器模型,以研究内部辅助元件(扩散板和下部滤料)的影响及其与砂粒大小和介质床深度的相互作用,以降低水头损失。清洁水条件下的水流速。实验分为两部分。首先,为了评估内部元件的影响,对水箱(空砂滤池)的水头损失进行了表征,使其水流方向与过滤和反冲洗过程一致。其次,根据过滤流向评估了内部元素与三种砂粒尺寸和三种介质床深度的相互作用。储罐的结果表明,不同的内部辅助元件会显着影响压头损失,对于所有评估的设备类型,反冲洗的流向生成的值都高于过滤流向。此外,观察到水头损失值受砂粒大小,床层深度,过滤速度以及这些变量之间的相互作用的影响很大。内部模型的不同模型产生了沙滤器的不同水力性能,表明它们在相同的工作条件下可能表现出不同的去除效率。研究发现有必要开发新程序,以设计沙滤池的内部元件和田间作业条件,以提高局部灌溉性能。

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