Cite

Albarghooth, A., A. Ramiar, and R. Ramyar, Earth-to-air Heat Exchanger for Cooling Applications in a Hot and Dry Climate: Numerical and Experimental Study. International Journal of Engineering, 2023. 36(1): p. 78-89 Search in Google Scholar

Mehdid, C.-E., A. Benchabane, A. Rouag, N. Moummi, M.-A. Melhegueg, A. Moummi, M.-L. Benabdi, and A. Brima, Thermal design of Earth-to-air heat exchanger. Part II a new transient semi-analytical model and experimental validation for estimating air temperature. Journal of Cleaner Production, 2018. 198: p. 1536-1544 Search in Google Scholar

Melhegueg, M.-A., A. Benchabane, A. Rouag, C.-E. Mehdid, H. Demir, and M.K. Sevindir, Thermal design of Earth-to-Air Heat Exchanger: Performance analysis of new transient semi-analytical model for short period of continuous operation. Case Studies in Thermal Engineering, 2022. 40: p. 102580 Search in Google Scholar

Rouag, A., A. Benchabane, and C.-E. Mehdid, Thermal design of Earth-to-Air Heat Exchanger. Part I a new transient semi-analytical model for determining soil temperature. Journal of Cleaner Production, 2018. 182: p. 538-544 Search in Google Scholar

Minaei, A. and H. Safikhani, A new transient analytical model for heat transfer of earth-to-air heat exchangers. Journal of Building Engineering, 2021. 33: p. 101560 Search in Google Scholar

Minaei, A., M. Bagheri, M. Maerefat, and H. Ghaebi, Thermal Performance Evaluation of Earth-to-Air Heat Exchanger Using a Semi-Transient Analytical Model. Journal of Mechanical Engineering, 2022. 52(1): p. 139-148 Search in Google Scholar

Cuny, M., J. Lin, M. Siroux, and C. Fond, Influence of an improved surrounding soil on the energy performance and the design length of earth-air heat exchanger. Applied Thermal Engineering, 2019. 162: p. 114320 Search in Google Scholar

Belloufi, Y., S. Zerouali, A. Rouag, F. Aissaoui, R. Atmani, A. Brima, and N. Moummi, Transient assessment of an earth air heat exchanger in warm climatic conditions. Geothermics, 2022. 104: p. 102442. Search in Google Scholar

Hamdane, S., C. Mahboub, and A. Moummi, Numerical approach to predict the outlet temperature of earth-to-air-heat-exchanger. Thermal Science and Engineering Progress, 2021. 21: p. 100806 Search in Google Scholar

Rosa, N., N. Soares, J. Costa, P. Santos, and H. Gervásio, Assessment of an earth-air heat exchanger (EAHE) system for residential buildings in warm-summer Mediterranean climate. Sustainable Energy Technologies and Assessments, 2020. 38: p. 100649 Search in Google Scholar

Nunes, B.R., M.K. Rodrigues, L.A. Oliveira Rocha, M. Labat, S. Lorente, E.D. dos Santos, L.A. Isoldi, and C. Biserni, Numerical‐analytical study of earth‐air heat exchangers with complex geometries guided by constructal design. International Journal of Energy Research, 2021. 45(15): p. 20970-20987 Search in Google Scholar

Bahmani, M.H. and A. Hakkaki-Fard, A hybrid analytical-numerical model for predicting the performance of the Horizontal Ground Heat Exchangers. Geothermics, 2022. 101: p. 102369 Search in Google Scholar

BELLOUFI, Y., Etude théorique et expérimentale de l’exploitation de la géothermie dans le réchauffement ou le refroidissement d’un fluide caloporteur utilisé pour le confort thermique de l’habitat, PhD Thesis, 2017, Université Mohamed Khider-Biskra Search in Google Scholar

Barakat, S., A. Ramzy, A.M. Hamed, and S.H. El Emam, Enhancement of gas turbine power output using earth to air heat exchanger (EAHE) cooling system. Energy Conversion and Management, 2016. 111: p. 137-146 Search in Google Scholar

de Jesus Freire, A., J.L.C. Alexandre, V.B. Silva, N.D. Couto, and A. Rouboa, Compact buried pipes system analysis for indoor air conditioning. Applied Thermal Engineering, 2013. 51(1): p. 1124-1134 Search in Google Scholar

Al-Ajmi, F., D.L. Loveday, and V.I. Hanby, The cooling potential of earth–air heat exchangers for domestic buildings in a desert climate. Building and Environment, 2006. 41(3): p. 235-244 Search in Google Scholar

Diersch, H.J.G., D. Bauer, W. Heidemann, W. Rühaak, and P. Schätzl, Finite element modeling of borehole heat exchanger systems: Part 2. Numerical simulation. Computers & Geosciences, 2011. 37(8): p. 1136-1147 Search in Google Scholar

Mnasri, T. and R.B. Younès, Modeling of Unsteady Turbulent Flow in a Buried Co-Axial Exchanger—The Use of Green's Functions Theory. Numerical Heat Transfer, Part A: Applications, 2010. 58(12): p. 963-983 Search in Google Scholar

Philippe, M., M. Bernier, and D. Marchio, Validity ranges of three analytical solutions to heat transfer in the vicinity of single boreholes. Geothermics, 2009. 38(4): p. 407-413 Search in Google Scholar

Belloufi, Y., A. Brima, S. Zerouali, R. Atmani, F. Aissaoui, A. Rouag, and N. Moummi, Numerical and experimental investigation on the transient behavior of an earth air heat exchanger in continuous operation mode. International Journal of Heat and Technology, 2017. 35(2): p. 279-288 Search in Google Scholar

Nougier, J.P., Méthodes de calcul numérique (Masson, 1987) Search in Google Scholar

Mathur, A., A.K. Surana, P. Verma, S. Mathur, G. Agrawal, and J. Mathur, Investigation of soil thermal saturation and recovery under intermittent and continuous operation of EATHE. Energy and Buildings, 2015. 109: p. 291-303. Search in Google Scholar

Niu, F., Y. Yu, D. Yu, and H. Li, Investigation on soil thermal saturation and recovery of an earth to air heat exchanger under different operation strategies. Applied Thermal Engineering, 2015. 77: p. 90-100. Search in Google Scholar

Wei, H., D. Yang, J. Wang, and J. Du, Field experiments on the cooling capability of earth-to-air heat exchangers in hot and humid climate. Applied Energy, 2020. 276: p. 115493. Search in Google Scholar

El Fadli, K.I., R.S. Cerveny, C.C. Burt, P. Eden, D. Parker, M. Brunet, T.C. Peterson, G. Mordacchini, V. Pelino, P. Bessemoulin, J.L. Stella, F. Driouech, M.M.A. Wahab, and M.B. Pace, World Meteorological Organization Assessment of the Purported World Record 58 °C Temperature Extreme at El Azizia, Libya (13 September 1922). Bulletin of the American Meteorological Society, Bull. Amer. Meteor. Soc., 2012. 94(2): p. 199-204. Search in Google Scholar