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Evaluation of Measurement Methodologies Used for Establishing Water Retention Characteristic Curve of Fly Ash

机译:建立粉煤灰保水特性曲线的测量方法评价

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摘要

Fly ash (FA) has potential applications in geotechnical and geoenvironmental projects, where its water retention characteristic curve (WRCC) is important. The main objective of this study was to establish the inherent range of measured suction of FAs using four different tools: tensiometer (TM), matric potential sensor, equitensiometer (EQT), and WP4 dew point potentiameter with a varying measurement range. Based on the measured results, the variability of WRCC equation parameters of four FAs collected from different thermal power plants were studied. Further, the sensitivity of a different range of measured suction on WRCC equation parameters of FA was investigated. The study indicated that the possible range of measurable suction for FA is 1 to 1000 kPa, which can be measured conveniently with an EQT. The parameters of FA were not influenced by high suction measurements (>1000 kPa) of WP4. The suction data (>1000 kPa) obtained using the WP4 can be appended with a low-suction-range instrument such as a TM for a better representation of the WRCC of FA. However, the study indicated that WRCC parameterization of FA is influenced more by the low range of suction.
机译:粉煤灰(FA)在岩土工程和地质环境项目中具有潜在的应用,在该项目中其保水特性曲线(WRCC)很重要。这项研究的主要目的是使用四种不同的工具来确定FAs的吸力的固有范围:张力计(TM),基质电势传感器,等强度计(EQT)和WP4露点电位计,其测量范围有所变化。基于测量结果,研究了从不同热电厂收集的四个FA的WRCC方程参数的变异性。此外,研究了不同量程的吸力对FA的WRCC方程参数的敏感性。研究表明,FA的可测量吸力的可能范围是1至1000 kPa,可以使用EQT方便地进行测量。 FA的参数不受WP4的高吸力测量值(> 1000 kPa)的影响。可以将使用WP4获得的吸力数据(> 1000 kPa)附加到低吸力范围的仪器(如TM)上,以更好地表示FA的WRCC。但是,研究表明,FA的WRCC参数化受吸力范围较小的影响更大。

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