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Electrical prospecting for seasonal frozen ground

机译:季节性冻土的电气勘探

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摘要

It is important to grasp freeze-thaw process and frozen depth for disaster prevention or agriculture in cold districts. Therefore, we studied the efficient survey technique for frozen ground using electrical prospecting. First, we investigated the dependence of apparent resistivity on ground temperature and the relationship between unfrozen water and temperature in our laboratory. Next, real-time electrical prospecting equipment was developed and a long-term resistivity monitoring was carried out at the frozen ground in Obihiro University, Hokkaido. Finally, each phase of the freeze-thaw process was considered by classifying the curves of normalized apparent resistivity into six types (H, Q, K, K1, A, A1). The results of our study are as follows. (1) The soil resistivity increases as the temperature decreases. Especially it becomes high rapidly at a temperature less than 0 degree. This is because the resistivity is deeply related to the amount of unfrozen-water in soil. (2) The normalized apparent resistivity curves change when the events of the freeze-thaw process occur. Two types of apparent resistivity curves are intermingled when the curve changes. Therefore it is easy to estimate the freeze-thaw process using the normalized apparent resistivity curves. (3) There is the correlation between the frost penetration rate and the slop of normalized apparent resistivity curve in a cold area without snow cover. The slop is almost the same if the frost depth is the same, even if the ground temperature is different. So we deduced the equation that calculates the frost depth from the slop of the curve for each type of six curves.
机译:对于寒冷地区的防灾或农业,掌握冻融过程和冻结深度非常重要。因此,我们研究了使用电勘探法对冻土的有效测量技术。首先,我们在实验室中研究了视电阻率对地面温度的依赖性以及未冻结水与温度之间的关系。接下来,开发了实时电勘探设备,并在北海道带广大学的冰冻地面上进行了长期电阻率监测。最后,通过将归一化视在电阻率曲线分为六种类型(H,Q,K,K1,A,A1)来考虑冻融过程的每个阶段。我们的研究结果如下。 (1)土壤电阻率随温度降低而增加。特别是在低于0度的温度下迅速变高。这是因为电阻率与土壤中的未冻结水量密切相关。 (2)当发生冻融过程时,归一化的表观电阻率曲线发生变化。当曲线变化时,两种类型的视在电阻率曲线会混合在一起。因此,使用归一化的视在电阻率曲线可以很容易地估计冻融过程。 (3)在没有积雪的寒冷地区,霜冻渗透率与归一化视在电阻率曲线的斜率之间存在相关性。即使霜冻深度相同,即使地面温度不同,其斜率也几乎相同。因此,我们推导出了用于计算六种曲线的每种类型的曲线坡度的公式。

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