Acknowledgement
본 논문의 내용은 산업통상자원부의 재원으로 한국에너지기술평가원의 지원을 받아 수행한 연구결과입니다(No.20172010105610). 아울러 논문의 일부 내용은 지엔원에너지(주)의 연구비 지원(2021년)으로 수행한 결과입니다.
References
- Choi, M. S., Oh, S. Y., Ji, C Y., and Lee, D. Y., 2017, An analysis of residential building energy consumption using building energy integrated database-Focused on building uses, regions, scale and the year of construction completion, Journal of Real Estate Analysis, Vol. 3, pp. 101-118. https://doi.org/10.30902/jrea.2017.3.1.101
- Cabeza, L. and Chafer, M., 2020, Technological options and strategies towards zero energy buildings contributing to climate change mitigation: A systematic review, Energy and Buildings, Vol. 219, pp. 1-46.
- Goetzler, W., Shandross, R., Young, J., Petritchenko, O., Ringo, D., and McClive, S., 2017, Energy Savings Potential and RD&D Opportunities for Commercial Building, US DOE Report.
- Wang, S., 2014, Energy modeling of ground source heat pump vs. variable refrigerant flow systems in representative US climate zones, Energy and Buildings, Vol. 72, pp. 222-228. https://doi.org/10.1016/j.enbuild.2013.12.017
- Kavanaugh, S. and Rafferty, K., 2014, Geothermal Heating and Cooling: Design of Ground-Source Heat Pump Systems, ASHRAE, Atlanta.
- Ahmadfard, M. and Bernier, M., 2019, A review of vertical ground heat exchanger sizing tools including an intermodel comparison, Renewable and Sustainable Energy Reviews, Vol. 110, pp. 247-265. https://doi.org/10.1016/j.rser.2019.04.045
- Javadi, H., Ajarostaghi, S., Rosen, M. A., and Pourfallah, M., 2019, Performance of ground heat exchangers: A comprehensive review of recent advances, Energy, Vol. 178, pp. 207-233. https://doi.org/10.1016/j.energy.2019.04.094
- Atam, E. and Helsen, L., 2016, Ground-coupled heat pumps: Part 1-Literature review and research challenges in modeling and optimal control, Renewable and Sustainable Energy Reviews, Vol. 54, pp. 1653-1667. https://doi.org/10.1016/j.rser.2015.10.007
- Atam, E. and Helsen, L., 2016, Ground-coupled heat pumps: Part 2-Literature review and research challenges in optimal design, Renewable and Sustainable Energy Reviews, Vol. 54, pp. 1668-1684. https://doi.org/10.1016/j.rser.2015.07.009
- Aynur, T. M., 2010, Variable refrigerant flow systems: A review, Energy and Buildings, Vol. 42, pp. 1106-1112. https://doi.org/10.1016/j.enbuild.2010.01.024
- Wan, H., Cao, T., Hwang, Y., and Oh, S., 2020, A review of recent advancements of variable refrigerant flow air-conditioning systems, Applied Thermal Engineering, Vol. 169, 114893. https://doi.org/10.1016/j.applthermaleng.2019.114893
- Zhou, Y. P., Wu, J. Y., Wang, R. Z., Shiochi, S., and Li, Y. M., 2008, Simulation and experimental validation of the variable-refrigerant-volume (VRV) air-conditioning system in EnergyPlus, Energy and Buildings, Vol. 40, pp. 1041-1047. https://doi.org/10.1016/j.enbuild.2007.04.025
- Im, P., Mini, M., Munk, J. D., and Lee, J., 2016, Cooling season full and part load performance evaluation of Variable Refrigerant Flow (VRF) system using an occupancy simulated research building, 16th International Refrigeration and Air Conditioning Conference at Purdue, Paper 1788.
- Kim, D., Cox, S. J., Cho, H., and Im, P., 2017, Evaluation of energy savings potential of variable refrigerant flow (VRF) from variable air volume (VAV) in the U.S. climate locations, Energy Reports, Vol. 3, pp. 85-93. https://doi.org/10.1016/j.egyr.2017.05.002
- Zhou, Y. P., Wu, J. Y., Wang, R. Z., and Shiochi, S., 2007, Energy simulation in the variable refrigerant flow air-conditioning system under cooling conditions, Energy and Buildings, Vol. 39, pp. 212-220. https://doi.org/10.1016/j.enbuild.2006.06.005
- Kwag, B. C. and Krarti, M., 2018, Evaluation of ground-source variable refrigerant flow system for U.S. office buildings, Sustainability, Vol. 10, 1621. https://doi.org/10.3390/su10051621
- Karr, M., 2011, Ground-source variable refrigerant flow heat pumps, Washington State University Extension Energy Program, Energy Efficiency Factsheet.
- Im, P. and Liu, X., 2015, Performance evaluation of a ground source variable refrigerant flow (VRF) System for a university building in cold climate, The 24th IIR International Congress of Refrigeration, Yokohama, Japan, Aug 23, 2015-Aug 28, 2015.
- Kim, S. S. and Heo, I. G., 2008, Ground source VRF system, Korea Journal of Geothermal Energy, Vol. 4, Issue 2, pp. 53-62.
- Kwag, B. C., 2018, Evaluation of Ground Source Variable Refrigerant Flow System for Medium Size Office Buildings in South Korea using Building Energy Modeling, KIEAE Journal, Vol. 18, pp. 85-90. https://doi.org/10.12813/kieae.2018.18.3.085
- US Department of Energy, 2018, EnergyPlus V8.9, US Department of Energy.
- DesignBuilder, 2019, DesignBuilder V6.1.2, DesignBuilder Software Ltd.
- ISO, 2021, ISO 13256-2:2021 Water-source het pumps-Testing and rating for performance-Part 2: Water-to-water and brine-to-water heat pumps, International Organization for Standardization.
- Gaia Geothermal, 2020, Ground Loop Design(GLD) V10.0.47, Gaia Geothermal.