Unsaturated Flow During Soil Treatment of Septic Tank Effluent

J. Bouma
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引用次数: 79

Abstract

Subsurface soil disposal of septic tank effluent is governed by physical flow processes in unsaturated soil. The capacity of a soil to accept, conduct, and purify effluent cannot be expressed by percolation tests or by hydraulic conductivities at saturation alone. Field tests are available now to measure complete K-curves and application to many soils in Wisconsin has shown that four different types of curves can be distinguished. Effects of biological clogging or mechanical compaction, or puddling on infiltration into the soil are examined, considering different levels of the water table and using a simple one-dimensional flow theory. Results of in situ monitoring with tensiometers of 12 seepage systems in different soils and design criteria, some tentative, for innovative systems in a wide range of soils are considered. Use of soil survey information for purposes of extrapolation of research results from tested to untested sites is recommended.
化粪池出水土壤处理过程中的非饱和流动
化粪池污水的地下处理受非饱和土的物理流动过程控制。土壤接受、传导和净化污水的能力不能仅用渗透试验或饱和时的水力传导率来表示。现在可以进行实地试验来测量完整的钾曲线,在威斯康辛州许多土壤上的应用表明,可以区分出四种不同类型的曲线。考虑到不同的地下水位并使用简单的一维流动理论,研究了生物堵塞或机械压实或水坑对土壤渗透的影响。本文考虑了12种不同土壤中渗透系统的张力仪现场监测结果和设计准则,以及在广泛的土壤中创新系统的一些初步设计准则。建议将土壤调查信息用于将研究结果从试验地点外推到未试验地点的目的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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