[1]
International Energy Agency, Cooling - More efforts needed. Tracking report, 2020, https://www.iea.org/reports/cooling, 2020.
Google Scholar
[2]
K.K. Agrawal, R. Misra, G.D. Agrawal, M. Bhardwaj, D.K. Jamuwa, The state of art on the applications, technology integration, and latest research trends of earth-air-heat exchanger system, Geothermics 82 (2019) 34-50.[3] A.A. Hegazi, O. Abdelrehim, A. Khater, Parametric optimization of earth-air heat exchangers (EAHEs) for central air conditioning, Int. J. Refrig. 129 (2021) 278-289.
DOI: 10.1016/j.geothermics.2019.05.011
Google Scholar
[4]
X. Guo, H. Wei, X. He, J. Du, D. Yang, Experimental evaluation of an earth-to-air heat exchanger and air source heat pump hybrid indoor air conditioning system, Energy Build. 256 (2022).
DOI: 10.1016/j.enbuild.2021.111752
Google Scholar
[5]
M.K. Rodrigues, F.S. Coswig, K.R. Camargo, L.A. Isoldi, R.S. Brum, J.V.A. Ramalho, J. Vaz, L.A.O. Rocha, E.D. Santos, Thermal performance simulations of Earth-Air Heat Exchangers for different soils of a coastal city using in-situ data, Sustain. Energy Technol. Assess. 30 (2018) 224-229.
DOI: 10.1016/j.seta.2018.10.003
Google Scholar
[6]
R.S. Brum, J.V.A. Ramalho, M.K. Rodrigues, L.A.O. Rocha, L.A. Isoldi, E.D. Dos Santos, Design evaluation of earth-air heat exchangers with multiple ducts, Renew. Energ. 135 (2019) 1371- 1385.
DOI: 10.1016/j.renene.2018.09.063
Google Scholar
[7]
R.S Brum, J. Vaz, L.A.O Rocha, E.D Dos Santos, L.A Isoldi, A new computational modeling to predict the behavior of earth-air heat exchangers, Energy Build. 64 (2013) 395-402.
DOI: 10.1016/j.enbuild.2013.05.032
Google Scholar
[8]
M.K Rodrigues, R.S Brum, J. Vaz, L.A.O Rocha, E.D. Dos Santos, L.A Isoldi, Numerical investigation about the improvement of the thermal potential of an earth-air heat exchanger (EAHE) employing the constructal design method, Renew. Energ. 80 (2015) 538-551.
DOI: 10.1016/j.renene.2015.02.041
Google Scholar
[9]
T. Zhou, Y. Xiao, H. Huang, J. Lin, Numerical study on the cooling performance of a novel passive system: Cylindrical phase change material-assisted earth-air heat exchanger, J. Clean. Prod. 245 (2020).
DOI: 10.1016/j.jclepro.2019.118907
Google Scholar
[10]
B. Pause, Phase change materials and their application in coatings and laminates for textiles, in: Smart Textile Coatings and Laminates. second ed., The Textile Institute Book Series, Greer, SC, 2019, pp.175-187.
DOI: 10.1016/b978-0-08-102428-7.00008-0
Google Scholar
[11]
T. Zhou, Y. Xiao, Y. Liu, J. Lin, H. Huang, Research on cooling performance of phase change material-filled earth-air heat exchanger, Energy Conv. Manag. 177 (2018) 210-223.
DOI: 10.1016/j.enconman.2018.09.047
Google Scholar
[12]
G.A. Vielma Vivas, Computational Modeling of Earth-Air Heat Exchangers Integrated with Phase Change Materials (in Portuguese), Mechanical Engineering Dissertation, Federal University of Pará, 2021.
Google Scholar
[13]
J. Vaz, M.A. Sattler, E.D. Dos Santos, L.A. Isoldi, Experimental and numerical analysis of an earth-air heat exchanger, Energy Build. 43 (2011) 2476-2482.
DOI: 10.1016/j.enbuild.2011.06.003
Google Scholar
[14]
M.K. Rodrigues, J. Vaz, L.A.O. Rocha, E.D. Dos Santos, L.A. Isoldi, A full approach to EarthAir Heat Exchanger employing computational modeling, performance analysis and geometric evaluation, Renew. Energ. 191 (2022), 535-556.
DOI: 10.1016/j.renene.2022.04.007
Google Scholar
[15]
T.L. Bergman, A.S. Lavine, F.P. Incropera, D.P. Dewitt, Fundamentals of Heat and Mass Transfer, seventh ed., John Wiley & Sons Inc., Hoboken, NJ, 2011.
Google Scholar
[16]
H.K. Versteeg, W. Malalasekera, An Introduction to Computational Fluid Dynamics: The Finite Volume Method, second ed., Pearson Education Limited, Harlow, England, 2007.
Google Scholar
[17]
D.C. Wilcox, Turbulence Modeling For CFD, third ed., DCW Industries, California, 2006.
Google Scholar
[18]
P.J. Pritchard, J.W. Mitchell, FOX and Mcdonald's: Introduction To Fluid Mechanics, ninth ed., John Wiley & Sons Inc., Hoboken, NJ, 2015.[19] B.E. Launder, D.B. Spalding, Lectures in Mathematical Models of Turbulence, Academic Press, London, 1972.
Google Scholar
[20]
C. Bonacina, G. Comini, A. Fasano, M. Primiceiro, Numerical solution of phase-change problems, Int. J. Heat Mass Transf. 16 (1973) 1825-1832.
DOI: 10.1016/0017-9310(73)90202-0
Google Scholar
[21]
Phase Change Energy Solutions, BioPCM Q20 Tunable Physical and Chemical Properties, https://phasechange.com/wp-content/uploads/2020/08/BioPCM-Data-Sheet-Q20.pdf, 2022.
Google Scholar
[22]
J. Vaz, M.A. Sattler, R.S. Brum, E.D. Dos Santos, L.A. Isoldi, An experimental study on the use of earth-Air heat exchangers (EAHE), Energy Build. 72 (2014) 122-131.
DOI: 10.1016/j.enbuild.2013.12.009
Google Scholar
[23]
M. Maytorena, S. Moreno, J.F. Hinojosa, Effect of operation modes on the thermal performance of EAHE systems with and without PCM in summer weather conditions, Energy Build. 250, (2021).
DOI: 10.1016/j.enbuild.2021.111278
Google Scholar
[24]
R.S. Brum, L.A.O. Rocha, J. Vaz, E.D. Dos Santos, L.A. Isoldi, Development of simplified numerical model for evaluation of the influence of soil-air heat exchanger installation depth over its thermal potential, Int. J. Adv. Renew. Energy Res. 1 (2012) 505-514.
Google Scholar