Carslaw, H.S., and Jaeger, J.C. (1959).Conduction of Heat in Solids, second edition. New York: Oxford University Press.
Charlier, R., Radu, J.-P. and Collin, F. (2001). Numerical mod elling of coupled transient phenomena. Revue Française de Génie Civil, 5(6), 719-741
Climate-data.org. Climate data for cities worldwide. Last ac cessed 15-10-2015, http://en.climate-data.org/
Collin, F., Li, X.L., Radu, J.-P. and Charlier, R. (2002). Ther mo-hydro-mechanical coupling in clay barriers. Engineering Geology, 64, 179-193
Erol, S. and François, B. (2014). Efficiency of various grouting materials for borehole heat exchangers. Appl. Therm. Eng., 70, 788-799
Fujii, H., Okubo, H., and Itoi, R. (2006). Thermal Response Tests Using Optical Fiber Thermometers. GRC Transac tions, 30, 545-551
Hermans, T., Nguyen, F., Robert, T. and Revil, A. (2014). Ge ophysical methods for monitoring temperature changes in shallow low enthalpy geothermal systems. Energies, 7 (8), 5083-5118
Hoffmann, L., Müller, M. S., Krämer, S., Giebel, M., Schwotzer, G. and Wieduwilt, T. (2007). Applications of Fibre Optic Temperature Measurement. Proc. Estonian Acad. Sci. Eng., 13 (4), 363-378.
Monier-Williams, M.E., Davis, R.K., Paillet, F.L., Turpening, R.M., Sol, S.J.Y and Schneider, G.W. (2009). Review of Borehole Based Geophysical Site Evaluation Tools and Techniques (Rep. NWMO TR-2009-25). Retrieved from Nuclear Waste Management Organization website: http://www.nwmo.ca/uploads_managed/MediaFiles/1770_n wmotr-2009-25boreholebasedgeophysicaltools_r0d.pdf
Radioti, G., Charlier, R., Nguyen, F. and Radu, J.-P. (2013). Thermal Response Test in Borehole Heat Exchangers Equipped with Fiber Optics. In: Proceedings, International Workshop on Geomechanics and Energy: The Ground as Energy Source and Storage. EAGE, Lausanne, Switzerland, 96-100
Radioti, G., Delvoie, S., Radu, J.-P., Nguyen, F. and Charlier, R. (2015a). Fractured bedrock investigation by using highresolution borehole images and the Distributed Temperature Sensing technique. In: ISRM Congress 2015 Proceedings-Int’l Symposium on Rock Mechanics, ISRM, Montreal, Can ada.
Radioti, G., Delvoie, S., Sartor, K., Nguyen, F. and Charlier, R. (2015b). Fiber-optic temperature profiles analysis for closed-loop geothermal systems: a case study. In: Proceed ings, Second EAGEWorkshop on Geomechanics and Ener gy:The Ground as Energy Source and Storage.EAGE, Cel le, Germany.
Sanner, B., Hellström, G., Spitler, J., and Gehlin, S. (2005). Thermal Response Test-Current Status andWorld-Wide Application. Proceedings World Geothermal Congress 2005, 24-29
Sartor, K., Quoilin, S. and Dewallef, P. (2014). Simulation and optimization of a CHP biomass plant and district heating network. Appied Energy, 130, 474-483
Tinti, F. (2012). The probabilistic characterization of under ground as a tool for the optimization of integrated design of shallow geothermal systems (Doctoral dissertation). Univer sity of Bologna, Italy.