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Performance of a Dynamic Dew Point Method for Moisture Isotherms of Clays

机译:动态露点法求解黏土等温线的性能

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Laboratory tests were conducted to assess the performance of a dynamic equilibrium method for rapidly measuring water vapor sorption isotherms of clays and clayey soils. Emphasis was placed on quantifying temperature stability, measurement reproducibility, establishing a recommended testing protocol, and comparing dynamically generated isotherms with those obtained using a conventional equilibrium method. Adsorption-desorption loops for water activity (a_w) or relative humidity ranging from 0.03 to 0.95 and containing as many as 140 discrete measurements were obtained using the dynamic method in 12-24 h. Far less intensive sorption isotherms using the equilibrium method required -600 h (25 days). Measurement reproducibility was within 6 % of the full-scale range. Water contents measured using the dynamic method at a_w less than 0.60 compared excellently with values measured using the equilibrium system and are within 10 to 15 % of the full-scale range at higher activity. Comparisons between total suction characteristic curves obtained using the dynamic system and the equilibrium system suggest a practical total suction measurement range from about 100 000 to 400 000 kPa for a wide range of clay types.
机译:进行了实验室测试,以评估用于快速测量粘土和黏性土壤的水蒸气吸附等温线的动态平衡方法的性能。重点放在量化温度稳定性,测量重现性,建立推荐的测试方案以及将动态生成的等温线与使用常规平衡方法获得的等温线进行比较。使用动态方法在12-24小时内获得了水分活度(a_w)或相对湿度在0.03至0.95之间的吸附-解吸回路,其中包含多达140个离散测量值。使用平衡法所需的强等温吸附线等温线所需的时间为-600小时(25天)。测量重现性在满量程范围的6%之内。使用动态方法在a_w处测得的水含量小于0.60,与使用平衡系统测得的值相比极好,并且在较高活性下处于全量程范围的10%至15%之内。使用动力系统和平衡系统获得的总吸力特性曲线之间的比较表明,对于各种类型的粘土,实际总吸力测量范围约为10万至40万千帕。

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