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Experimental Study on Moisture Migration in Unsaturated Loess under Effect of Temperature

机译:温度作用下非饱和黄土水分迁移的实验研究

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摘要

In this paper, moisture migration in loess considering temperature effect is studied by tests on unsaturated loess samples with different densities and initial moisture contents. Test results reveal that obvious changes in moisture content distribution in a loess sample can be observed after temperature difference is exerted on the two ends of the sample. Moisture content at the cold end increases and that at the hot end decreases. Under the effect of temperature difference, moisture content difference at the two ends of a soil sample is related to the initial moisture content, soil density, and magnitude of the temperature difference. Generally speaking, larger temperature differences and smaller soil densities result in more obvious moisture migration and larger moisture content differences at the two ends of the soil sample. When the initial moisture content is large, the moisture content difference caused by a temperature difference is small; when the initial moisture content is small, the moisture content difference caused by a temperature difference is also small; when the initial moisture content is moderate, the moisture content difference caused by a temperature difference is large. After the analysis of test results, taking the soil density and moisture content into account, a formula is obtained to determine the moisture content gradient resulting from the temperature gradient. Reliability of the formula is verified by comparing the measured and calculated data. Because of the reverse migration of liquid water and water vapor at the end of the experiment, it is difficult to determine the thermal potential and matrix potential. Based on the experimental data, this paper probes into the water potential equation that can be used for stability analysis. The equation considers the comprehensive impact of soil density, temperature gradient, moisture content, and moisture content gradient on water potential. It only applies to analyze stable distributions of temperature and does not apply to unstable temperature distributions.
机译:本文通过对不同密度和初始含水量的不饱和黄土样品的试验研究了考虑温度效应的黄土中水分的迁移。测试结果表明,在样品两端施加温差后,可以观察到黄土样品中水分含量分布的明显变化。冷端的水分含量增加,而热端的水分含量减少。在温度差的影响下,土壤样品两端的水分含量差异与初始水分含量,土壤密度和温度差异的大小有关。一般来说,较大的温度差和较小的土壤密度会导致土壤样品两端的水分迁移更加明显,水分含量差异也更大。当初始水分含量大时,由温度差引起的水分含量差小;当初始含水量较小时,由温差引起的含水量差也较小。当初始水分含量适中时,由温度差引起的水分含量差大。在对测试结果进行分析之后,考虑到土壤密度和水分含量,获得了一个公式来确定由温度梯度产生的水分含量梯度。通过比较测量数据和计算数据来验证公式的可靠性。由于实验结束时液态水和水蒸气的反向迁移,因此很难确定热势和基体势。基于实验数据,本文探讨了可用于稳定性分析的水势方程。该方程式考虑了土壤密度,温度梯度,水分含量和水分含量梯度对水势的综合影响。它仅适用于分析温度的稳定分布,不适用于不稳定的温度分布。

著录项

  • 来源
    《Journal of Cold Regions Engineering》 |2010年第3期|p.77-86|共10页
  • 作者

    Tie-hang Wang; Li-jun Su;

  • 作者单位

    School of Civil Engineering, Xi'an Univ. of Architecture and Technology, 13 Yanta Rd., Xi'an, Shaanxi 710055, People's Republic of China;

    School of Civil Engineering, Xi'an Univ. of Architecture and Technology, 13 Yanta Rd., Xi'an, Shaanxi 710055, People's Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    moisture migration; temperature; loess; unsaturated soil; hydraulic head; moisture content;

    机译:水分迁移;温度;黄土;非饱和土壤液压头水分含量;
  • 入库时间 2022-08-17 23:47:01

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