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首页> 外文期刊>Journal of Cold Regions Engineering >Soil Moisture Variations in Frozen Ground Subjected to Hydronic Heating
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Soil Moisture Variations in Frozen Ground Subjected to Hydronic Heating

机译:冻土冻土冻土土壤水分变化

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摘要

Full-scale thawing experiments, performed on three types of homogenous, initially frozen soils, were carried out during late winter 2011 and repeated in 2012. An auxiliary heat source (hydronic heating) was employed to initiate and expedite the thawing process. The corresponding phase change, soil temperature increase, and variations in bound and unbound water content were monitored during the experiments. The resulting thermal response have been published in an earlier paper by the authors. In the current paper, the remaining results are presented. This includes spatial and temporal soil moisture variations and resulting thaw rates. Results from both experiments show similar trends. Generally, frost-susceptible soils, such as silty sand, contain more water and thaw slower relative to coarser soils, such as gravelly sand. Very porous soils (uniform gravel) with low water content thaw comparatively slower. Thaw rates compiled from soil moisture records correspond well with similar based on soil temperature. The degree of water redistribution and migration is higher in silty sand compared with coarser soils. These processes are more prominent in the uppermost layer for all soils examined.
机译:在2011年晚冬季进行三种类型的均质,最初冻土的全尺寸解冻实验,并在2012年重复。使用辅助热源(氢化加热)来启动和加快解冻过程。在实验期间监测相应的相变,土壤温度升高和结合水含量的变化。由作者的早期纸张发表了所得到的热响应。在目前的论文中,呈现了剩余的结果。这包括空间和颞土壤水分变化并产生了解冻速率。两个实验的结果表明了类似的趋势。通常,脂肪易感土壤(例如粉状砂)含有更多的水和除了较粗的土壤,例如砾石砂。具有低含水含量的多孔土壤(均匀砾石)较慢较慢。从土壤湿度记录编制的解冻率与土壤温度相似。与较粗的土壤相比,粉碎的水再分配和迁移程度较高。这些过程在所检查的所有土壤的最上层中更突出。

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