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Mathematical analysis of heat pulse signals for soil water flux determination

机译:mathematical analysis of heat pulse signals for soil water flux determination

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摘要

[1] Soil water flux is an important parameter in studies of runoff, infiltration, groundwater recharge, and subsurface chemical transport. Heat pulse sensors have been proposed as promising tools for measuring soil water fluxes. To date, heat pulse methods have required cumbersome mathematical analyses to calculate soil water flux from the measured data. We present a new mathematical analysis showing that a simple linear relationship exists between soil water flux and the natural log of the ratio of the temperature increase downstream from the line heat source to the temperature increase upstream from the line heat source. The simplicity of this relationship makes heat pulse sensors an attractive option for measuring soil water fluxes. In theory, this method is valid for fluxes with magnitudes between 10(-4) and 10(-7) m s(-1). The range of measurable fluxes is defined by temperature measurement resolution at the lower end and by the assumptions used in the analysis at the higher end.
机译:[1]土壤水通量是径流,入渗,地下水补给和地下化学物质运输研究中的重要参数。已经提出热脉冲传感器作为测量土壤水通量的有前途的工具。迄今为止,热脉冲法需要繁琐的数学分析,才能根据测量数据计算土壤水通量。我们提出了一个新的数学分析,表明土壤水通量与管线热源下游温度升高与管线热源上游温度升高之比的自然对数之间存在简单的线性关系。这种关系的简单性使得热脉冲传感器成为测量土壤水通量的有吸引力的选择。从理论上讲,此方法适用于大小在10(-4)和10(-7)m s(-1)之间的通量。可测通量的范围由较低端的温度测量分辨率和较高端的分析中使用的假设定义。

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