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Moisture Content Measurements of Green Roof Substrates Using Two Dielectric Sensors

机译:使用两个介电传感器测量绿色屋顶基材的水分含量

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摘要

Little is known about the accuracy of soil moisture dielectric sensors in coarse-textured root zones and green roof substrates. In the present study, the accuracy of two dielectric sensors of different technologies (frequency domain and time domain dielectric sensor) in measuring moisture content was investigated in six coarse-textured green roof substrates. Calibration equations were developed for both sensors, and the effect of electrical conductivity (EC) on substrate moisture content calculationwas determined. It was found that for frequency domain sensor the relationship between dielectric permittivity square root (y/e) and actual substrate moisture content (0m) was strongly linear for all tested substrates. However, for each substrate a distinct specific calibration equation of y/e — 0m was required. The correlation between substrate permittivity and EC was linear for frequency domain sensor for all moisture levels (0% to 35%). In the case of time domain sensor, each green roof substrate was also described from a different calibration curve between actual substrate moisture content and period of time that was recorded by the device. It was found that their relationship was quadratic for all substrates. In addition, time domain sensor output responded in a quadratic manner to increasing levels of EC. This response was found to interact with actual substrate moisture content as well. It was concluded that the most reliable results for moisture content determination of the coarse-textured green roof substrates were obtained by substrate-specific calibration curves for both dielectric sensors.
机译:对于粗糙结构的根部区域和绿色屋顶基质中土壤水分介电传感器的准确性知之甚少。在本研究中,研究了六个不同质地的绿色屋顶基底中两种不同技术的电介质传感器(频域和时域电介质传感器)在测量水分含量中的准确性。为两个传感器开发了校准方程式,并确定了电导率(EC)对基材水分含量计算的影响。发现对于所有测试的基板,对于频域传感器,介电常数平方根(y / e)与实际基板含水量(0m)之间的关系均呈强线性关系。然而,对于每个衬底,需要y / e_0m的不同的特定校准方程式。对于所有湿度水平(0%至35%)的频域传感器,底物介电常数与EC之间的线性关系。在时域传感器的情况下,还根据实际基材水分含量和设备记录的时间段之间的不同校准曲线来描述每个绿色屋顶基材。发现它们的关系对于所有底物都是二次的。另外,时域传感器的输出以二次方的方式对增加的EC做出响应。发现该响应也与实际的基材水分含量相互作用。得出的结论是,通过两种介电传感器的特定于基材的校准曲线,可获得最可靠的粗纹理屋顶材料水分含量测定结果。

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