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

被引:0
作者
Kruse, Aaron M. [1 ]
Darrow, Margaret M. [1 ]
Akagawa, Satoshi [2 ]
机构
[1] Univ Alaska, Dept Min & Geol Engn, Fairbanks, AK 99775 USA
[2] Cryosphere Engn Lab, Hachioji, Tokyo 1930826, Japan
基金
美国国家科学基金会;
关键词
Pulsed nuclear magnetic resonance (P-NMR); Unfrozen water; Frozen soil; Free induction decay (FID); PERMAFROST; ICE;
D O I
10.1061/(ASCE)CR.1943-5495.0000141
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
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.
引用
收藏
页数:7
相关论文
共 39 条
[21]   Comparing unfrozen water content measurements of frozen soil using recently developed commercial sensors [J].
Yoshikawa, K ;
Overduin, PP .
COLD REGIONS SCIENCE AND TECHNOLOGY, 2005, 42 (03) :250-256
[22]   The effect of soil salinity and the organic matter content on the thermal properties and unfrozen water content of frozen soils at the west coast of Baydarata Bay [J].
Aleksyutina, D. M. ;
Motenko, R. G. .
MOSCOW UNIVERSITY GEOLOGY BULLETIN, 2016, 71 (03) :275-279
[23]   MEASURING EQUIVALENT COHESION CEQ OF THE FROZEN SOILS BY COMPRESSION STRENGTH USING KRIOLAB EQUIPMENT [J].
Lemenkov, Vasiliy ;
Lemenkova, Polina .
CIVIL AND ENVIRONMENTAL ENGINEERING REPORTS, 2021, 31 (02) :63-84
[24]   A comprehensive method of determining the soil unfrozen water curves 2. Stages of the phase change process in frozen soil-water system [J].
Kozlowski, T .
COLD REGIONS SCIENCE AND TECHNOLOGY, 2003, 36 (1-3) :81-92
[25]   Magnetic resonance diffusion and relaxation characterization of water in the unfrozen vein network in polycrystalline ice and its response to microbial metabolic products [J].
Brown, Jennifer R. ;
Brox, Timothy I. ;
Vogt, Sarah J. ;
Seymour, Joseph D. ;
Skidmore, Mark L. ;
Codd, Sarah L. .
JOURNAL OF MAGNETIC RESONANCE, 2012, 225 :17-24
[26]   Characterization and prediction of compressive strength in ultralow-temperature frozen soil using nuclear magnetic resonance and WOA-ENN Model [J].
Ren, Zhifeng ;
Wang, Enliang ;
Liu, Jiankun ;
Jiang, Haiqiang ;
Yao, Zeyu .
TRANSPORTATION GEOTECHNICS, 2023, 43
[27]   Prediction of Mechanical Properties of Frozen Soils Using Response Surface Method: An Optimization Approach [J].
Vahdania, M. ;
Ghazavia, M. ;
Roustaeib, M. .
INTERNATIONAL JOURNAL OF ENGINEERING, 2020, 33 (10) :1826-1841
[28]   Identifying ice lens initiation of frozen soils using particle image velocimetry method [J].
Li, Jinfeng ;
Pereira, Jean-Michel ;
Teng, Jidong ;
Zhang, Sheng .
CANADIAN GEOTECHNICAL JOURNAL, 2025, 62 :1-6
[29]   On the freezing process of sea water from data of laboratory measurements based on nuclear magnetic resonance [J].
Melnichenko, N. A. ;
Stunzhas, P. A. .
OCEANOLOGY, 2014, 54 (06) :705-712
[30]   Covalency of hydrogen bonds in liquid water can be probed by proton nuclear magnetic resonance experiments [J].
Elgabarty, Hossam ;
Khaliullin, Rustam Z. ;
Kuehne, Thomas D. .
NATURE COMMUNICATIONS, 2015, 6