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Field Demonstration of the Combined Effects of Absorption and Evapotranspiration on Septic System Drainfield Capacity

机译:吸收和蒸发蒸腾对化粪池排水系统排污能力的综合影响的现场演示

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Drainfields for disposal of septic tank effluents are typically designed by considering the loss of water by either upward evapotranspi-ration into the atmosphere or lateral and downward absorption into the adjacent soil. While this approach is appropriate for evapotranspiration systems, absorption systems allow water loss by both mechanisms. It was proposed that, in areas where high evapotranspiration rates coincide with permeable soils, drainfield sizes could be substantially reduced by accounting for both mechanisms. A two-year field demonstration was conducted to determine appropriate design criteria for areas typical of the Texas High Plains. The study consisted of evaluating the long-term acceptance rates for three different drainfield configurations: evapotranspiration only, absorption only, and combined conditions. A second field demonstration repeated the experiments for additional observation of the combined evapotranspiration and absorption and achieved similar results as the first study. The field tests indicated that the current design loading criteria may be increased by at least a factor of two for the Texas High Plains region and other Texas areas with similar soil composition and evapotranspiration rates, while still retaining a factor of safety of two.
机译:处理化粪池废水的排水场通常是通过考虑向上蒸发向大气中蒸发或横向和向下向邻近土壤吸收而造成的水损失而设计的。虽然此方法适用于蒸散系统,但吸收系统却允许两种机制都损失水分。有人提出,在高蒸散速率与可渗透土壤相吻合的地区,通过考虑这两种机制,可以大幅度减小流域的大小。进行了为期两年的现场演示,以确定德克萨斯高平原典型地区的适当设计标准。该研究包括评估三种不同流失场结构的长期接受率:仅蒸散,仅吸收和综合条件。第二个现场演示重复了该实验,以进一步观察结合的蒸散和吸收,并获得了与第一个研究相似的结果。现场测试表明,对于得克萨斯州高平原地区和其他土壤成分和蒸散速率相似的德克萨斯州地区,当前的设计荷载标准至少可以提高两倍,而安全系数仍为两倍。

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