Effect of gravel content on soil water retention characteristics and thermal capacity of sandy and silty soils

IF 2.3 4区 环境科学与生态学 Q3 WATER RESOURCES
S. Beck-Broichsitter, Z. Rizvi, R. Horn, F. Wuttke
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引用次数: 2

Abstract

Abstract The presence of gravel in soils modifies the porosity, pore connectivity and pore size distribution in the soil matrix as well as the soil matrix-gravel interfaces. The aim of the present study is to investigate the effect of relative volume of gravel in samples with gravel mass fractions of 5,10, 20 wt% and varying bulk densities (1.3, 1.45, 1.55, 1.60, 1.65 g cm–3) on (i) total porosity, field capacity, plant available water holding capacity, (ii) pore size distribution and (iii) thermal capacity of repacked sandy and silty soils. The focus of the study was to determine if laboratory measured soil water retention curves considering (i), (ii), and (iii) can be predicted by a gravel-based weighting factor, Rv, considering comprehensive significance tests. The sand-gravel mixtures show a decrease in the volume fractions of macropores and wide cores pores with an increase in the gravel contents, while the silt-gravel mixtures show an opposite trend. The root mean square errors (RMSE) between measured and fitted volumetric water contents, θ, between 0.006 and 0.0352 and between 0.002 and 0.004 for Rv-weighted volumetric water contents indicate that the van Genuchten-based Peters-Durner-Iden (PDI) model is appropriate for fitting. The soil water retention curves with mass gravel contents of up to 10 wt% for silt and 20 wt% for sand can be well predicted by weighting factors (relative volume of rock fragments) in the range between 0.045 and 0.058 for silt, and between 0.112 and 0.119 for sand. The results also indicate a decrease in the Rv-weighted saturated, cvsat, and dry, cvdry, thermal capacity with an increase in the gravel contents for both soils. Further investigations are needed to examine if and whether measured sand- and silt-gravel mixtures with mass gravel contents below 10 % or rather 20 % can be predicted with a weighting factor.
含砾量对砂质和粉质土壤保水特性和热容量的影响
土中碎石的存在改变了土基质的孔隙度、孔隙连通性和孔径分布,也改变了土基质-碎石界面。本研究的目的是研究砾石质量分数为5%、10%、20%和不同体积密度(1.3、1.45、1.55、1.60、1.65 g cm-3)的样品中砾石的相对体积对(i)总孔隙度、田间容量、植物有效持水量、(ii)孔隙大小分布和(iii)重新包装的砂质和粉质土壤的热容量的影响。研究的重点是确定考虑(i)、(ii)和(iii)的实验室测量土壤保水曲线是否可以通过基于砾石的加权因子Rv,考虑综合显著性检验来预测。砂砾混合物中大孔和宽孔的体积分数随砾石含量的增加而减小,粉砾混合物中则相反。实测和拟合的体积含水量θ的均方根误差(RMSE)在0.006 ~ 0.0352之间,rv加权体积含水量在0.002 ~ 0.004之间,表明van Genuchten-based Peters-Durner-Iden (PDI)模型适合拟合。采用0.045 ~ 0.058粉土和0.112 ~ 0.119沙土的相对碎石体积加权系数可以较好地预测砾质含量分别为10 wt%和20 wt%时的土壤保水曲线。结果还表明,随着砾石含量的增加,两种土壤的rv加权饱和热容、cvsat热容和干热容、cvdry热容都有所下降。需要进一步的研究,以确定是否可以用加权系数来预测砾石质量含量低于10%或20%的砂粉砾石混合物。
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来源期刊
CiteScore
4.20
自引率
5.30%
发文量
30
审稿时长
>12 weeks
期刊介绍: JOURNAL OF HYDROLOGY AND HYDROMECHANICS is an international open access journal for the basic disciplines of water sciences. The scope of hydrology is limited to biohydrology, catchment hydrology and vadose zone hydrology, primarily of temperate zone. The hydromechanics covers theoretical, experimental and computational hydraulics and fluid mechanics in various fields, two- and multiphase flows, including non-Newtonian flow, and new frontiers in hydraulics. The journal is published quarterly in English. The types of contribution include: research and review articles, short communications and technical notes. The articles have been thoroughly peer reviewed by international specialists and promoted to researchers working in the same field.
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