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The compatibility of osmitic tecnique and vapour equilibrium technique in establishing suction-water content of soil water characteristics curves

机译:建立土壤水分特征曲线吸水率的渗透技术与蒸汽平衡技术的兼容性

摘要

The aim of this study is to establish the soil-water characteristic curve during drying by osmotic and vapour equilibrium techniques and to check the applicability of PEG tested using vapour equilibrium technique principle to establish soil-water characteristics curve without the use of membrane as in the osmotic technique. The establishment of more accurate wide range of suction become of the basic issue in the geotechnical engineering. This study focused on the compatibility of osmotic technique and vapour equilibrium technique in establishing suction-water content of soil water characteristics curves. In order to get more accurate and reliable results, taking a longer time to analyses the soil is much worth then get less accurate result in short time. This studies is conducted using M1X80 bentonite, Speswhite Kaolin, and Greek Bentonite as soil sample for osmotic technique and vapour equilibrium technique based on 5 suction range from 0.44 MPa to 8.17 MPa. The time equilibrium is plot in the beginning of the experiment to identify the end point of the experiment . The final water content of the soil sample is studied and suction-water content soil water characteristic curve is plotted based on 3 soil samples. The compatibility of the each soil sample based on osmotic technique and vapour equilibrium technique is checked and in fact it is not compatible with each other. It can be conclude that the PEG is not applicable in vapour equilibrium technique without the use of the membrane as in the osmotic technique. There is also fungi growth problems occurs when using PEG to applied suction in vapour equilibrium technique at suction lower than 1 MPa.
机译:这项研究的目的是通过渗透和蒸汽平衡技术建立干燥过程中的土壤-水特征曲线,并检验采用蒸汽平衡技术原理测试的PEG的适用性,以建立土壤-水特征曲线而不使用膜。渗透技术。建立更精确的宽范围吸力已成为岩土工程中的基本问题。本研究着眼于渗透技术和蒸汽平衡技术在建立土壤水分特征曲线的吸水率上的兼容性。为了获得更准确和可靠的结果,花费更长的时间分析土壤是很有价值的,然后在短时间内获得不太准确的结果。这项研究是使用M1X80膨润土,Speswhite高岭土和希腊膨润土作为土壤样品进行渗透技术和蒸汽平衡技术的,其吸力范围为0.44 MPa至8.17 MPa,范围为5。在实验开始时绘制时间平衡以标识实验结束点。研究了土壤样品的最终含水量,并基于3个土壤样品绘制了吸水率土壤水分特征曲线。检查了基于渗透技术和蒸汽平衡技术的每种土壤样品的相容性,实际上它们之间并不相容。可以得出结论,在渗透平衡技术中,如果不使用膜,则PEG不适用于蒸汽平衡技术。当在低于1 MPa的吸力下使用PEG在蒸汽平衡技术中施加吸力时,也会出现真菌生长问题。

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    Ang Veei Zhun;

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  • 年度 2014
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