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Effluent flux prediction in variably saturated soil zones within a septic tank—soil absorption trench

机译:化粪池 - 土壤吸收沟槽中可变饱和土区的流出通量预测

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摘要

The treatment and hydraulic mechanisms in a septic tank-soil absorption system (SAS) are highly in?uenced by the clogging layer or biomat zone which develops on bottom and lower sidewall surfaces within the trench. Flow rates through the biomat and sub-biomat zones are governed largely by the biomat hydraulic properties (resistance and hydraulic conductivity) and the unsaturated hydraulic conductivity of the underlying soil. One- and 2-dimensional models were used to investigate the relative importance of sidewall and vertical ?ow rates and pathways in SAS. Results of 1-dimensional modelling show that several orders of magnitude variation in saturated hydraulic conductivity (Ks) reduce to a 1 order of magnitude variation in long-term ?ow rates. To increase the reliability of prediction of septic trench hydrology, HYDRUS-2D was used to model 2-dimensional ?ow. In the permeable soils, under high trench loading, ef?uent preferentially ?owed in the upper region of the trench where no resistant biomat was present (the ex?ltration zone). By comparison, ?ow was more evenly partitioned between the biomat zones and the ex?ltration zones of the low permeability soil. An increase in ef?uent in?ltration corresponded with a greater availability of ex?ltration zone, rather than a lower resistance of biomat. Results of modelling simulations demonstrated the important role that a permeable A horizon may play in limiting surface surcharge of ef?uent under high trench hydraulic loading.
机译:化粪池 - 土壤吸收系统(SAS)中的处理和液压机构高度夹在沟槽内的底部和下侧壁表面上的堵塞层或生物夯区。通过生物法和亚生物夯区的流速主要受到生物液液压特性(电阻和液压导电性)和下面土壤的不饱和水力传导率的管辖。使用一个和二维模型来研究侧壁和垂直何种的相对重要性和SAS中的途径。 1维建模的结果表明,饱和液压导电性的几个幅度变化(Ks)减少到长期率的1级变化阶数。为了提高化学沟槽水分预测的可靠性,Hydrus-2d用于模拟二维ω。在渗透性的土壤中,在高沟槽载荷下,EFα优先于沟槽的上部区域,其中没有存在耐药生物培训(EXα停留区)。相比之下,在生物夯区和低渗透性土壤中更均匀地分区。 EF的增加?LTRation的LTRITION与EX?LTRATION区域的更大可用性相对应,而不是生物培训的较低电阻。模拟模拟结果表明,在高沟槽液压荷载下限制了渗透性的地平线可能发挥的重要作用。

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