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首页> 外文期刊>Vadose Zone Journal >A Transient Evaporation Method for Determining Soil Hydraulic Properties at Low Pressure
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A Transient Evaporation Method for Determining Soil Hydraulic Properties at Low Pressure

机译:一种确定土壤低压水力特性的瞬态蒸发方法

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摘要

A two-stage laboratory method is presented for rapid estimation of the soil water retention function () and the hydraulic conductivity function K() from near saturation to air dry. The pressure head, h, at the bottom of an initially saturated soil core was stepwise decreased whenever the outflow rate had essentially ceased. After attaining this near-equilibrium at = -160 cm, the bottom boundary was sealed, the soil surface was uncovered, and the evaporation rate at a controlled constant temperature was measured. The () was determined by curve-fitting of the equilibrium outflow and psychrometric data obtained from soil samples after evaporation, while the K() was estimated inversely using cumulative evaporation amounts and the final water content profile. The simulated cumulative evaporation and final water content profiles from the optimized parameter values agreed well with the measured data. The root mean square errors for evaporation and the final water content profile were less than 0.022 cm and 0.011, respectively. In addition to close agreement with the simulation, agreement with independent K() data obtained from a steady-state, direct method confirm the reliability of the method presented here.
机译:提出了一种两阶段的实验室方法,用于从接近饱和到空气干燥快速估算土壤保水函数()和水力传导率(sup> 函数K()。每当流出量基本停止时,初始饱和土心底部的压力头 h逐步减小。 在-160 cm处达到接近平衡,密封底部 边界,未覆盖土壤表面,并测量了在受控恒温下的 蒸发速率。 ()是通过平衡流出的曲线拟合 和蒸发后从土壤样品获得的干湿法数据确定的, ,而K()则使用累积蒸发量 和最终水分含量曲线。从优化的 参数值模拟得出的累积 蒸发和最终水含量曲线与测量数据非常吻合。蒸发的根 均方误差和最终水分含量 分别小于0.022 cm和0.011。在 中进一步与模拟保持一致,与 从稳态直接方法 获得的独立K()数据一致,从而确认了这里介绍的方法。

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  • 来源
    《Vadose Zone Journal》 |2003年第3期|400-408|共9页
  • 作者单位

    Institute of Agricultural and Forest Engineering, University of Tsukuba, 1-1-1 Tennohdai, Tsukuba, Ibaraki 305-8572, Japan;

    Arid Land Research Center, Tottori University, 1390 Hamasaka, Tottori 680-0001, Japan;

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