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Performance of infiltration swales with regard to operation in winter times in an Alpine region

机译:在冬季高寒地区冬季渗透作业的表现

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In cold climate regions winter conditions significantly influence the performance of stormwater infiltration devices. Frozen soil and water storage by snow changes their operation. In this paper winter operation of a grassed infiltration swale was investigated using on-site and laboratory measurements. The field investigation of a grassed swale at a parking place in an Alpine region showed that the swale fulfilled its function properly. Although the top layer was frozen for some time, the storage capacity of the swale was sufficient to store the precipitation until the conditions improved. The soil attenuated the air temperature, at 20 cm below ground surface the soil was only frozen for one week. Winter maintenance proved to be a problem, together with the snow from the parking place a lot of gravel and fine particles were deposited at one end of the swale. This decreased the hydraulic conductivity at that point significantly. The laboratory tests with soil columns showed an increase of flow time through the soil column with decreasing soil moisture content. For soil temperatures below 0°C the hydraulic conductivity was reduced for increasing initial soil moisture contents. All in all the hydraulic conductivity was best around 0°C for all soil water contents. However, also at minus 5°C the coefficient of hydraulic conductivity was always at least above 10~(-6) m/s, thus within the range of tolerated hydraulic conductivity specified in the national guidelines. Nevertheless, the handling of the soil was found to have high influence on the results. The results indicate that in the Alpine region infiltration swales operate sufficiently under winter conditions although with decreased performance.
机译:在寒冷的气候地区,冬季条件会严重影响雨水渗透装置的性能。冰雪冻结的土壤和水的储存会改变其运行。在本文中,使用现场和实验室测量研究了草浸入沼泽的冬季运转。在一个高山地区的一个停车场对草鱼进行了实地调查,结果表明草鱼能够正常发挥作用。尽管顶层被冷冻了一段时间,但灰藻的储存能力足以储存沉淀,直到条件改善为止。土壤使空气温度降低,在距地面20 cm处仅冻结了一周。冬季维护被证明是一个问题,加上停车场的积雪,大量的砾石和细小颗粒沉积在沼泽的一端。这一点大大降低了水力传导率。用土壤柱进行的实验室测试表明,随着土壤水分含量的降低,流经土壤柱的时间增加了。对于低于0°C的土壤温度,降低了水力传导率,以增加土壤的初始水分含量。对于所有土壤水分,总的来说水力传导率最好在0°C左右。但是,在负5°C时,水力传导系数始终至少至少在10〜(-6)m / s以上,因此在国家准则规定的容许水力传导率范围内。然而,发现土壤的处理对结果有很大的影响。结果表明,在高寒地区,入渗沼泽在冬季条件下运转良好,尽管性能下降。

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