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Analytical methods for estimating saturated hydraulic conductivity in a tile-drained field

机译:瓷砖排水领域中饱和导水率的估算方法

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摘要

Determination of field-scale hydraulic properties is required for many hydrologic predictions. Four analytical methods for determining the saturated hydraulic conductivity k on the field scale for a field drained by a network of parallel drains are considered. These methods, all derived from the Boussinesq equation, relate: (1) time rate of change of discharge to discharge; (2) relative discharge to time; (3) time rate of change of water table height to heights and (4) relative water table height to time. Though all four methods eliminate the need to know precisely the beginning time of the recession curve, which is in practice ambiguous, Methods (2) and (4) do not require taking time derivates of observations, which introduces noise. The mean field-scale k based on several recession events on two I ha fields using all methods was 4 m/d. This is near the median k of 5 m/d calculated from 40 soil cores taken at various depths within the same fields, but five times less than the mean k of the soil cores (20 m/d). (C) 2003 Elsevier B.V. All rights reserved. [References: 24]
机译:许多水文预测都需要确定现场规模的水力特性。考虑了四种分析方法,用于确定由平行排水管网络排水的田地的饱和水力传导率k。这些方法都是从Boussinesq方程导出的,它们涉及:(1)放电到放电的时间变化率; (2)相对放电时间; (3)地下水位高度随时间的变化率和(4)地下水位相对高度随时间的变化率。尽管所有这四种方法都不需要精确知道衰退曲线的开始时间,但实际上这是模棱两可的,但是方法(2)和(4)不需要采取观测时间的导数,而这会引入噪声。使用所有方法,基于两个I ha油田的几次衰退事件的平均油田规模k为4 m / d。这接近于5 m / d的中值k,该k是根据同一田地内不同深度采集的40个土芯计算得出的,但比土芯的平均k(20 m / d)小五倍。 (C)2003 Elsevier B.V.保留所有权利。 [参考:24]

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