Page 146 - Analysis and Design of Energy Geostructures
P. 146
118 Analysis and Design of Energy Geostructures
References
ASHRAE, 2012. American Society of Heating Refrigeration and Air-Conditioning Engineers
Handbook. ASHRAE, Atlanta, GA.
Alrtimi, A., Rouainia, M., Haigh, S., 2016. Thermal conductivity of a sandy soil. Appl. Therm. Eng.
106, 551 560.
Banks, D., 2012. An Introduction to Thermogeology: Ground Source Heating and Cooling. John Wiley
& Sons.
Beard, D., Weyl, P., 1973. Influence of texture on porosity and permeability of unconsolidated sand.
AAPG Bull. 57 (2), 349 369.
Bedford, A., Drumheller, D.S., 1983. Theories of immiscible and structured mixtures. Int. J. Eng.
Sci. 21 (8), 863 960.
Bergman, T., Incropera, F., Lavine, A., DeWitt, D., 2011. Fundamentals of Heat and Mass Transfer.
Wiley, Hoboken, NJ.
Boley, B.A., Weiner, J.H., 1997. Theory of Thermal Stresses. Dover Publications, Mineola, NY.
Bourne-Webb, P., Freitas, T.B., da Costa Gonçalves, R., 2016. Thermal and mechanical aspects of the
response of embedded retaining walls used as shallow geothermal heat exchangers. EnergyBuild. 125,
130 141.
Brandl, H., 2006. Energy foundations and other thermo-active ground structures. Geotechnique 56 (2),
81 122.
Brandon, T., Mitchell, J., 1989. Factors influencing thermal resistivity of sands. J. Geotech. Eng. 115 (12),
1683 1698.
Burghignoli, A., Desideri, A., Miliziano, S., 2000. A laboratory study on the thermomechanical behavior
of clayey soils. Can. Geotech. J. 37 (4), 764 780.
Carman, P.C., 1937. Fluid flow through granular beds. Trans. -Inst. Chem. Eng. 15, 150 166.
Casagrande, A., 1937. Seepage through dams. Water Works Assoc. L1 (2), 131 172.
Chen, S.X., 2008. Thermal conductivity of sands. Heat Mass Transf. 44 (10), 1241.
Chiasson, A.D., Rees, S.J., Spitler, J.D., 2000. A preliminary assessment of the effects of groundwater
flow on closed-loop ground source heat pump systems. ASHRAE Trans. 106 (1), 380 393.
Clark, S.P., 1966. Handbook of Physical Constants. Geological Society of America.
Côté, J., Konrad, J.-M., 2005. A generalized thermal conductivity model for soils and construction mate-
rials. Can. Geotech. J. 42 (2), 443 458.
Darcy, H., 1856. Les fontaines publiques de la ville de Dijon: exposition et application. Victor Dalmont.
De Boer, R., Ehlers, W., 1988. A historical review of the formulation of porous media theories. Acta
Mech. 74 (1-4), 1 8.
De Vries, D.A., 1963. Thermal properties of soils. In: Physics of Plant Environment. Wiley, New York.
Donazzi, F., Occhini, E., Seppi, A., 1979. Soil thermal and hydrological characteristics in designing
underground cables. In: Proceedings of the Institution of Electrical Engineers. IET, vol. 126, pp.
506 516.
Dysli, M., 1991. Le gel et son action sur les sols et les fondations. PPUR presses polytechniques.
EN ISO 6946, 2007. BS EN ISO 6946: 2007 Building components and building elements—Thermal
resistance and thermal transmittance—Calculation method. International Organization for
Standardization.
Farouki, O.T., 1986. Thermal Properties of Soils. Series on Rock and Soil Mechanics, vol. 11. Trans
Tech Publications, Clausthal-Zellerfeld.
Folk, R.L., Ward, W.C., 1957. Brazos River bar: a study in the significance of grain size parameters.
J. Sediment. Res. 27 (1), 3 26.
Fourier, J., 1822. Theorie analytique de la chaleur. Chez Firmin Didot, père et fils.
Fredlund, D.G., Rahardjo, H., Rahardjo, H., 1993. Soil Mechanics for Unsaturated Soils. John Wiley &
Sons.
Gangadhara Rao, M., Singh, D., 1999. A generalized relationship to estimate thermal resistivity of soils.
Can. Geotech. J. 36 (4), 767 773.
Gemant, A., 1952. How to compute thermal soil conductivities. Heat. Pip. Air Cond. 24 (1), 122 123.