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Sand box experiments to evaluate the influence of subsurface temperature probe design on temperature based water flux calculation

机译:砂箱实验评估地下温度探头设计对基于温度的水通量计算的影响

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Quantification of subsurface water fluxes based on the one dimensional solution to the heat transport equation depends on the accuracy of measured subsurface temperatures. The influence of temperature probe setup on the accuracy of vertical water flux calculation was systematically evaluated in this experimental study. Four temperature probe setups were installed into a sand box experiment to measure temporal highly resolved vertical temperature profiles under controlled water fluxes in the range of ±1.3 m d~(-1). Pass band filtering provided amplitude differences and phase shifts of the diurnal temperature signal varying with depth depending on water flux. Amplitude ratios of setups directly installed into the saturated sediment significantly varied with sand box hydraulic gradients. Amplitude ratios provided an accurate basis for the analytical calculation of water flow velocities, which matched measured flow velocities. Calculated flow velocities were sensitive to thermal properties of saturated sediment and to temperature sensor spacing, but insensitive to thermal dispersivity equal to solute dispersivity. Amplitude ratios of temperature probe setups indirectly installed into piezometer pipes were influenced by thermal exchange processes within the pipes and significantly varied with water flux direction only. Temperature time lags of small sensor distances of all setups were found to be insensitive to vertical water flux.
机译:基于热传递方程的一维解对地下水通量的量化取决于所测地下温度的准确性。在这项实验研究中,系统地评估了温度探头设置对垂直水通量计算精度的影响。在沙箱实验中安装了四个温度探头装置,以在±1.3 m d〜(-1)的受控水通量下测量时间高度解析的垂直温度分布。通带滤波提供了昼夜温度信号的幅度差和相移,其随深度而变化,这取决于水通量。直接安装到饱和沉积物中的装置的振幅比随砂箱水力梯度而显着变化。振幅比为水流速度的解析计算提供了准确的基础,水流速度与测量的水流速度匹配。计算的流速对饱和沉积物的热特性和温度传感器的间距敏感,但对等于溶质分散性的热分散性不敏感。间接安装到测压管中的温度探头装置的振幅比受管内热交换过程的影响,并且仅随水通量方向而显着变化。发现所有设置的传感器距离都较小的温度时滞对垂直水通量不敏感。

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