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Effect of Initial Moisture Content on Critical Temperature of Three Sandy Soils

机译:初始水分含量对三种砂土临界温度的影响

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Once soil temperature reaches a critical temperature due to heat generated from a heat source (e.g., ground-based heat exchangers, buried electrical cables), moisture migration is initiated, which may result in a significant change in soil thermal conductivity. In this study, laboratory testing was performed to evaluate how initial moisture content affects soil critical temperature. Temperature and moisture contents of three sandy soils at 1% and 3% initial moisture contents were measured using a radial-based apparatus, including a centrally placed heating element. While discontinuities near the boundary between dry and wet zones were clearly observed in soils at 3% initial moisture content, the 1% initial moisture content cases had gradual temperature profiles instead of pronounced discontinuities. Temperature and moisture profiles were thus used with soil images to determine critical temperature. As initial moisture content increased from 1% to 3%, moisture migration decreased with an increase in critical temperature average from 31.6 °C to 44.7 °C. This experimental data supports the concept that soil critical temperature is not a constant for a soil compacted to the same density and that other mechanistic attributes are causative.
机译:一旦土壤温度由于来自热源产生的热量而达到临界温度(例如,地基热交换器,埋地电缆),启动水分迁移,这可能导致土壤导热率的显着变化。在这项研究中,进行实验室测试以评估初始含水量如何影响土壤临界温度。使用基于径向的装置测量三个含有1%和3%初始水分含量的三种砂土的温度和水分含量,包括集中放置的加热元件。虽然在初始水分含量的土壤中清楚地观察到干燥和湿地区之间的边界附近的不连续性,但1%的初始水分含量病例具有渐进的温度曲线而不是明显的不连续性。因此,温度和水分型材与土壤图像一起使用以确定临界温度。由于初始水分含量从1%增加到3%,水分迁移随着31.6℃至44.7℃的临界温度的增加而降低。该实验数据支持土壤临界温度不是压实与相同密度的土壤的恒定的概念,并且其他机械属性是致病性的。

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