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Soil water flux density measurements near 1 cm d~(-1)using an improved heat pulse probe design

机译:使用改进的热脉冲探头设计在1 cm d〜(-1)附近测量土壤水通量密度

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摘要

The heat pulse probe (HPP) technique has been successfully applied for estimating water flux density (WFD). Estimates of WFD have been limited to values greater than 10 cm d~(-1), except for two recent studies with lower detection limits of 2.4 and 5.6 cm d~(-1). Although satisfactory for saturated soils, it is recognized that current HPP capabilities are limited for applications in the vadose zone, where WFD values are generally below 1 cm d~(-1). Since numerical sensitivity analysis has shown that large heater needle diameters may increase HPP capabilities in the lower flux density range, a HPP with a 4-mm-diameter heater needle was developed and tested. WFD values were obtained by fitting temperature data to the analytical solution for a pulsed cylindrical heat source of infinite length. Effective heater-thermistor distance and soil thermal diffusivity values were determined for specific heat input scenarios with zero WFD, prior to imposing water flow across the HPP needles. We showed excellent results in the range of 1-10 cm d~(-1) and satisfactory results in the range of 10-1000 cm d~(-1).
机译:热脉冲探针(HPP)技术已成功应用于估算水通量密度(WFD)。 WFD的估计值被限制为大于10 cm d〜(-1)的值,但最近两项研究的检测限较低,分别为2.4和5.6 cm d〜(-1)。尽管对于饱和土壤是令人满意的,但是已经认识到,当前的HPP能力在渗流区的应用中受到限制,渗流区的WFD值通常低于1 cm d〜(-1)。由于数值敏感性分析表明,大直径的加热针在较低的通量密度范围内可能会提高HPP能力,因此开发并测试了直径为4毫米的加热针的HPP。通过将温度数据拟合到无限长脉冲圆柱形热源的分析溶液中,可以得到WFD值。在强加水流过HPP针之前,针对特定的热量输入情景,在WFD为零的情况下,确定有效的加热器-热敏电阻距离和土壤热扩散率值。我们在1-10 cm d〜(-1)范围内显示出优异的结果,在10-1000 cm d〜(-1)范围内显示出令人满意的结果。

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  • 来源
    《Water resources research》 |2010年第4期|p.W00D014.1-W00D014.12|共12页
  • 作者单位

    Department of Land, Air and Water Resources, University of California, 123 Veihmeyer Hall, Davis, CA 95616, USA;

    Department of Land, Air and Water Resources, University of California, 123 Veihmeyer Hall, Davis, CA 95616, USA;

    Department of Agronomy, Kansas State University, 2004 Throckmorton Hall, Manhattan, KS 66506, USA;

    Department of Land, Air and Water Resources, University of California, 123 Veihmeyer Hall, Davis, CA 95616, USA;

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