Effects of NaCl concentration on thermal conductivity of clay with cooling

Springer Science and Business Media LLC - Tập 79 Số 3 - Trang 1449-1459 - 2020
Chao Lyu1, Qiang Sun2, Weiqiang Zhang3
1Key Laboratory of Coalbed Methane Resources and Reservoir Formation Process, Ministry of Education, China University of Mining and Technology, Xuzhou, 221008, China
2Geological Research Institute for Coal Green Mining, Xi'an University of Science and Technology, Xi'an, 710054, China
3School of Resources and Geosciences, China University of Mining and Technology, Xuzhou 221116, China

Tóm tắt

Từ khóa


Tài liệu tham khảo

Abuhamdeh NH, Reeder RC (2000) Soil thermal conductivity: effects of density, moisture, salt concentration, and organic matter. Soil Sci Soc Am J 64(4):1285–1290

Bi J, Zhang M, Chen W, Lu J, Lai Y (2018) A new model to determine the thermal conductivity of fine-grained soils. Int J Heat Mass Transf 123:407–417

Christ M, Park JB (2009) Ultrasonic technique as tool for determining physical and mechanical properties of frozen soils. Cold Reg Sci Technol 58:136–142

De Vries DA (1963) Thermal properties of soil. In: Van Wijk WR (ed) Physics of plant environment. North-Holland Publ. Co., Amsterdam, pp 210–235

Douaik A, Van Meirvenne M, Tóth T (2005) Soil salinity mapping using spatio-temporal kriging and Bayesian maximum entropy with interval soft data. Geoderma 128(3):234–248

Geng J, Sun Q (2018) Effects of high temperature treatment on physical-thermal properties of clay. Thermochim Acta 666:148–155

Ji Y, Zhou G, Hall MR (2019) Frost heave and frost heaving-induced pressure under various restraints and thermal gradients during the coupled thermal–hydro processes in freezing soil. Bull Eng Geol Environ 78(5):3671–3683

Jia GS, Tao ZY, Meng XZ, Ma CF, Chai JC, Jin LW (2019) Review of effective thermal conductivity models of rock-soil for geothermal energy applications. Geothermics 77:1–11

Kang M, Lee JS (2015) Evaluation of the freezing-thawing effect in sand-silt mixtures using elastic waves and electrical resistivity. Cold Reg Sci Technol 113:1–11

Kimball BA, Jackson RD, Reginato RJ, Nakayama FS, Idso SB (1976) Comparison of field-measured and calculated soil-heat fluxes. Soil Sci Soc Am J 40(1):18–25

Kunii D, Smith JM (1960) Heat transfer characteristics of porous rocks. AICHE J 6(1):71–78

Liu B, Li D (2012) A simple test method to measure unfrozen water content in clay–water systems. Cold Reg Sci Technol 78:97–106

Lu Y, Lu S, Horton R, Ren T (2014) An empirical model for estimating soil thermal conductivity from texture, water content, and bulk density. Soil Sci Soc Am J 78(6):1859–1868

Mochizuki H, Mizoguchi M, Miyazaki T (2003) Effects of water content and NaCl concentration on thermal conductivity of swelling and non-swelling clays (in Japanese). Trans Jpn Soc Irrig Drain Reclam Eng 225:55–61

Mochizuki H, Mizoguchi M, Miyazaki T (2008) Effects of NaCl concentration on the thermal conductivity of sand and glass beads with moisture contents at levels below field capacity. Soil Sci Plant Nutr 54(6):829–838

Mogomedov UB (1998) Thermal conductivity of binary and multicomponent aqueous solutions of inorganic substances. High Temp 36:44–50

Nassauer B, Liedke T, Kuna M (2013) Polyhedral particles for the discrete element method. Granul Matter 15(1):85–93

Ng TT (2009) Particle shape effect on macro- and micro-behaviors of monodisperse ellipsoids. Int J Numer Anal Met 33(4):511–527

Noborio K, Mcinnes KJ (1993) Thermal conductivity of salt-affected soils. Soil Sci Soc Am J 57(2):329–334

Overduin PP, Kane DL, van Loon WK (2006) Measuring thermal conductivity in freezing and thawing soil using the soil temperature response to heating. Cold Reg Sci Technol 45(1):8–22

Palomino AM, Santamarina JC (2005) Fabric map for kaolinite: effects of pH and ionic concentration on behavior. Clay Clay Miner 53(3):211–223

Pei WS, Yu WB, Li SY, Zhou JZ (2013) A new method to model the thermal conductivity of soil–rock media in cold regions: an example from permafrost regions tunnel. Cold Reg Sci Technol 95:11–18

Sepaskhah AR, Boersma L (1979) Thermal conductivity of soils as a function of temperature and water content. Soil Sci Soc Am J 43(3):439–444

Shainberg I, Otoh H (1968) Size and shape of montmorillonite particles saturated with Na/Ca ions (inferred from viscosity and optical measurements). Israel J Chem 6(3):251–259

Shen Y, Wang Y, Yang Y, Sun Q, Luo T, Zhang H (2019) Influence of surface roughness and hydrophilicity on bonding strength of concrete-rock interface. Constr Build Mater 213:156–166

Sun Q, Lü C (2019) Semiempirical correlation between thermal conductivity and electrical resistivity for silt and silty clay soils. Geophysics 84(3):MR99–MR105

Takemura T, Sato M, Chiba T, Uemura K, Ito Y, Funabiki A (2017) Effect of sedimentary facies and geological properties on thermal conductivity of Pleistocene volcanic sediments in Tokyo, central Japan. Bull Eng Geol Environ 76(1):191–203

Tang Y, Zhou J, Zhang M, Liu Y (2015) Research on the thermal conductivity and moisture migration characteristics of Shanghai mucky clay. I: Experimental modeling. Bull Eng Geol Environ 74(2):577–593

Tang L, Wang K, Jin L, Yang G, Jia H, Taoum A (2018) A resistivity model for testing unfrozen water content of frozen soil. Cold Reg Sci Technol 153:55–63

Tokoro T, Ishikawa T, Shirai S, Nakamura T (2016) Estimation methods for thermal conductivity of sandy soil with electrical characteristics. Soils Found 56(5):927–936

Van Olphen H (1977) An introduction to clay colloid chemistry, 2nd edn. Wiley-Interscience, New York

Van Rooyen M, Winterkorn HF (1959) Structural and textural influences on thermal conductivity of soils. In Highway Research Board Proceedings 38:576-621

Wang DY, Zhu YL, Ma W, Niu YH (2006) Application of ultrasonic technology for physical-mechanical properties of frozen soil. Cold Reg Sci Technol 44:12–19

Watanabe K, Osada Y (2017) Simultaneous measurement of unfrozen water content and hydraulic conductivity of partially frozen soil near 0°C. Cold Reg Sci Technol 142:79–84

Wierenga PJ, Nielsen DR, Hagan RM (1969) Thermal properties of a soil based upon field and laboratory measurements. Soil Sci Soc Am J 33(3):354–360

Xing HF, Yang XM, Xu C, Ye GB (2009) Strength characteristics and mechanisms of salt-rich soil-cement. Eng Geol 103(1-2):33–38

Yamamoto Y, Springman SM (2014) Axial compression stress path tests on artificial frozen soil samples in a triaxial device at temperatures just below 0°C. Can Geotech J 51(10):1178–1195

Zhang B, Han C, Yu XB (2015) A non-destructive method to measure the thermal properties of frozen soils during phase transition. J Rock Mech Geotech Eng 7(2):155–162

Zhang M, Lu J, Lai Y, Zhang X (2018) Variation of the thermal conductivity of a silty clay during a freezing-thawing process. Int J Heat Mass Transf 124:1059–1067