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Monitoring infiltration under a real on-site treatment system of domestic wastewater and evaluation of soil transfer function (Paris Basin, France)

机译:在真实的生活污水现场处理系统下监测渗入并评估土壤转移功能(法国巴黎盆地)

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摘要

The problematic of evacuation of treated domestic wastewater has been investigated through a field study on a real undrained on-site treatment system (UOSTS). This system imposes a special mode of infiltration into the soil which is irregular. In order to characterize the hydraulic properties of this type of flow, soil texture, organic matter content and in situ saturated hydraulic conductivity (Ks) were measured for each of 15 m² of soil under the bottom of the UOSTS. In addition, the variation of water table and rainfall and the evolution of soil moisture and matrix potential were monitored by using the sensors implanted under the system. The mean of the measured Ks is 100 times higher than values deduced from empirical pedotransfer functions based on the soil matrix properties. The measured Ks vary greatly on the 15 m² area. Moreover, large and variable quantities of stone fragments (> 2 mm) were found in the soil samples. These results suggest that a heterogeneous flow may occur in the stony soil via the macropores which shortcut the soil matrix. Indeed, according to their position, a non-uniform reaction of the sensors to the infiltration of treated wastewater was observed. In addition, two daily periodic peaks of water consumption in the house have been detected by the water content and tensiometer probes, confirming that the saturation rate is controlled by infiltration and not the water table.
机译:通过对真正的不排水现场处理系统(UOSTS)进行的现场研究,已经研究了处理后生活污水的疏散问题。该系统施加了一种特殊的渗透到不规则土壤的方式。为了表征此类流动的水力特性,对UOSTS底部下方15平方米的土壤分别测量了土壤质地,有机质含量和原位饱和水力传导率(Ks)。此外,通过使用系统下植入的传感器,可以监测地下水位和降雨的变化以及土壤水分和基质势的变化。测得的Ks的平均值比根据土壤基质特性从经验的pedotransfer函数得出的值高100倍。在15平方米的区域中,测得的Ks相差很大。此外,在土壤样品中发现了数量不定的大量石头碎片(> 2 mm)。这些结果表明,在石质土壤中可能通过缩短土壤基质的大孔发生非均质流动。实际上,根据它们的位置,可以观察到传感器对处理后的废水渗透的不均匀反应。此外,房屋中的每日耗水量的两个周期性峰值已通过含水量和张力计探头检测到,这证实了饱和率是由渗透而不是地下水位控制的。

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