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Temporal monitoring of the soil freeze-thaw cycles over snow-cover land by using off-ground GPR

机译:利用离地GPR对积雪土地上土壤冻融循环的时间监测

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We performed off-ground ground-penetrating radar (GPR) measurements over a bare agricultural field to monitor the freeze-thaw cycles over snow-cover. The GPR system consisted of a vector network analyzer combined with an off-ground monostatic horn antenna, thereby setting up an ultra-wideband stepped-frequency continuous-wave radar. Measurements were performed during nine days and the surface of the bare soil was exposed to snow fall, evaporation and precipitation as the GPR antenna was mounted 110 cm above the ground. Soil surface dielectric permittivity was retrieved using an inversion of time-domain GPR data focused on the surface reflection. The GPR forward model used combines a full-waveform solution of Maxwell's equations for three-dimensional wave propagation in planar layered media together with global reflection and transmission functions to account for the antenna and its interactions with the medium. Temperature and permittivity sensors were installed at six depths to monitor the soil dynamics in the top 8 cm depth. Significant effects of soil dynamics were observed in the time-lapse GPR, temperature and permittivity data and in particular freeze and thaw events were clearly visible. A good agreement of the trend was observed between the temperature, permittivity and GPR time-lapse data with respect to five freeze-thaw cycles. The GPR-derived permittivity was in good agreement with sensor observations. The proposed method appears to be promising for the real-time mapping and monitoring of the frozen layer at the field scale.
机译:我们在裸露的农田上进行了地面穿透雷达(GPR)的测量,以监测积雪的冻融循环。 GPR系统由矢量网络分析仪和离地单静态号角天线组成,从而建立了超宽带步进频率连续波雷达。在为期9天的时间内进行了测量,并且将GPR天线安装在离地面110厘米的地方,裸露的土壤表面受到降雪,蒸发和降水的影响。使用时域GPR数据反演来获取土壤表面介电常数,该数据着重于表面反射。使用的GPR正向模型结合了Maxwell方程在平面分层介质中进行三维波传播的全波形解决方案以及全局反射和传输功能,以解决天线及其与介质之间的相互作用。温度和介电常数传感器安装在六个深度处,以监控顶部8厘米深度处的土壤动力学。在延时GPR,温度和介电常数数据中观察到了土壤动力学的显着影响,尤其是清晰可见的冻融事件。相对于五个冻融循环,在温度,介电常数和GPR延时数据之间观察到趋势的良好一致性。 GPR衍生的介电常数与传感器观测值非常吻合。所提出的方法对于现场规模的冻结层的实时制图和监测看来是有希望的。

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