Mobile QR Code QR CODE : Korean Journal of Air-Conditioning and Refrigeration Engineering
Korean Journal of Air-Conditioning and Refrigeration Engineering

Korean Journal of Air-Conditioning and Refrigeration Engineering

ISO Journal TitleKorean J. Air-Cond. Refrig. Eng.
  • Open Access, Monthly
Open Access Monthly
  • ISSN : 1229-6422 (Print)
  • ISSN : 2465-7611 (Online)

References

1 
International Energy Agency, 2022, Global energy crisis. https://www.iea.org/topics/global-energy-crisis.URL
2 
International Energy Agency, 2023, Russia’s war on Ukraine. https://www.iea.org/topics/russias-war-on-ukraine.URL
3 
Hadorn, J. C., 2010, Solar and Heat Pump Systems, IEA SHC task 44 and HPP, Symposium on Thermal Solar Energy, pp. 618-624.URL
4 
Chen, Y., Hua, H., Wang, J., and Lund, P. D., 2021, Integrated Performance Analysis of a Space Heating System Assisted by Photovoltaic/thermal Collectors and Ground Source Heat Pump for Hotel and Office Building Types, Renewable Energy, Vol. 169, pp. 925-934.DOI
5 
Abu-Rumman, M., Hamdan, M., and Ayadi, O., 2020, Performance Enhancement of a Photovoltaic Thermal (PVT) and Ground-source Heat Pump System, Geothermics, Vol. 82, p. 101809.DOI
6 
Qiu, G., Li, K., Cai, W., and Yu, S., 2023, Optimization of an Integrated System Including a Photovoltaic/thermal System and a Ground Source Heat Pump System for Building Energy Supply in Cold Areas, Applied Energy, Vol. 349, p. 121698.DOI
7 
Bae, S. and Nam, Y., 2022, Feasibility Analysis for an Integrated System Using Photovoltaic-thermal and Ground Source Heat Pump Based on Real-scale Experiment, Renewable Energy, Vol. 185, pp. 1152-1166.DOI
8 
Bae, S., Nam, Y., and Cunha, I. D., 2019, Economic Solution of the Tri-generation System Using Photovoltaic-thermal and Ground Source Heat Pump for Zero Energy Building (ZEB) Realization, Energies, Vol. 12, p. 3304.DOI
9 
Warner, J., Liu, X., Shi, L., Qu, M., and Zhang, M., 2020, A Novel Shallow Bore Ground Heat Exchanger for Ground Source Heat Pump Applications - Model Development and Validation, Applied Thermal Engineering, Vol. 164, p. 114460.DOI
10 
Kim, K., Bae, S., Nam, Y., Lee, E., and Entchev, E., 2022, Development of a Low-depth Modular GHX Trough a Real-scale Experiment, Energies, Vol. 15, p. 698.DOI
11 
Barone, G., Buonomano, A., Forzano, C., Palombo, A., and Panagopoulos, O., 2019, Photovoltaic-thermal Collectors: Experimental Analysis and Simulation Model of an Innovative Low-cost Water-based Prototype, Energy, Vol. 179, pp. 502-516.DOI
12 
Bae, S., Chae, H., Lyu, N., and Nam, Y., 2024, Development of Photovoltaic-thermal Using Attachable Solar Collector Based on on-site Construction, Applied Thermal Engineering, Vol. 238, p. 121971.DOI
13 
Bae, S., Nam, Y., Lee, E. J., and Entchev, E., 2022, Feasibility Study of a Novel Hybrid Energy System Combining Photovoltaic-thermal and Modular Ground Heat Exchanger, Journal of Building Engineering, Vol. 61, p. 105241.DOI
14 
Schober, P., Boer, C., and Schwarte, L. A., 2018, Correlation Coefficients: Appropriate use and Interpretation, Anesthesia & Analgesia, Vol. 126, No. 5, pp. 1763-1768.DOI
15 
Lim, K. S., Heo, C. H., Choi, Y. Y., and Lee, S. T., 2005, A Study on Standard for Determination of Hidden Layer Node Number in Artificial Multi-layer Neural Network Model, Journal of Korean Society of Water Science and Technology, Vol. 13, No. 3, pp. 65-77.URL
16 
ASHRAE, 2014, ASHRAE Guideline 14 Measurement of Energy, Demand, and Water Savings, ASHRAE, Atlanta, pp. 16-19.URL