Investigating Freeze-Thawing Behavior of Saline Soil Using Electrical Resistivity Measurement

Author:

Liu Rui11233,Zhu Cheng11233,Schmalzel John11233,Barrowes Benjamin11233,Glaser Danney11233,Maxson Michele11233,Lein Wade11233

Affiliation:

1. Center for Research and Education in Advanced Transportation Engineering Systems, Dept. of Civil and Environmental Engineering, Rowan Univ., Glassboro, NJ.

2. Dept. of Electrical and Computer Engineering, Rowan Univ., Glassboro, NJ.

3. Cold Regions Research and Engineering Laboratory, US Army Engineer Research and Development Center, Hanover, NH.

Publisher

American Society of Civil Engineers

Reference23 articles.

1. Clayton L. K. Schaefer K. Battaglia M. J. Bourgeau-Chavez L. Chen J. Chen R. H. Chen A. Bakian-Dogaheh K. Grelik S. and Jafarov E. (2021 May 11). Active layer thickness as a function of soil water content. Environmental Research Letters. Retrieved May 22 2022 from https://iopscience.iop.org/article/10.1088/1748-9326/abfa4c/pdf.

2. Daee B. (2021). Solar in winter: Mitigating risk of environmental damage to solar panels. pv magazine USA. Retrieved May 2 2022 from https://pv-magazine-usa.com/2021/12/30/solar-in-winter-mitigating-risk-of-environmental-damage-to-solar-panels/.

3. FHWA. (2006). (rep.). Geotechnical Aspects of Pavements: Reference Manual. Washington, DC: National Highway Institute.

4. Harris, S. A. (2018). Geocryology : characteristics and use of frozen ground and permafrost landforms, First edition. ed. CRC Press/Balkema is an imprint of the Taylor & Francis Group, Boca Raton, Florida.

5. Kim Y. Kim K. Hong S. and Cho W. (2014). The Variation of Physical Properties in Frozen Soils at Various Freezing Temperatures. Retrieved December 13 2020 from https://asmedigitalcollection.asme.org/OMAE/proceedings/OMAE2014/45561/V010T07A007/270888.

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