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Improvements in Measuring Unfrozen Water in Frozen Soils Using the Pulsed Nuclear Magnetic Resonance Method

机译:脉冲核磁共振法对冻结土壤中未冻结水的测量的改进

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04017016.1-04017016.7%The pulsed nuclear magnetic resonance (P-NMR) method is commonly used to determine unfrozen water content in frozen soils. Traditionally, unfrozen water content is calculated using first return data from the free induction decay (FID) signal intensity (SI); however, these data may contain both ice and liquid water responses, thus overestimating unfrozen water. To address this, the authors used the normalization method for calculating unfrozen water. First, the authors refined a P-NMR testing system for greater temperature control. Next, testing using two P-NMR instruments at different facilities yielded repeatable unfrozen water measurements to within 2.6% of each other. Results from a desorption test indicated excellent agreement (with an average difference of 0.33%) between P-NMR-derived unfrozen water and physical gravimetric water content data. Finally, comparing results from the normalization method to the first return data indicated that calculated unfrozen water in a frozen soil is up to 3.3 times greater for a given temperature using the first return data versus the normalization method. Because this difference is significant, the authors recommend further investigation using an independent method to confirm the results. (C) 2017 American Society of Civil Engineers.
机译:04017016.1-04017016.7%脉冲核磁共振(P-NMR)方法通常用于测定冷冻土壤中的未冷冻水含量。传统上,使用来自自由感应衰减(FID)信号强度(SI)的第一返回数据来计算未冻结的水含量;但是,这些数据可能同时包含冰和液态水的响应,因此高估了未冻结的水。为了解决这个问题,作者使用归一化方法来计算未冻结的水。首先,作者改进了P-NMR测试系统以实现更好的温度控制。接下来,在不同的设备上使用两台P-NMR仪器进行测试,结果可重复的未冻结水测量结果相差不超过2.6%。解吸测试的结果表明,派生自P-NMR的未冻结水与物理重量水含量数据之间具有极好的一致性(平均差为0.33%)。最后,将归一化方法的结果与第一返回数据进行比较,结果表明,使用第一返回数据与归一化方法相比,对于给定温度,在冻结土壤中计算出的未冻水最多高3.3倍。由于这种差异很明显,因此作者建议使用独立方法进行进一步调查以确认结果。 (C)2017年美国土木工程师学会。

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