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 
Lim K. H., 2015, A study on the intention of the Korean baby boomers to choose and move after retirement, Korean Ph.D. dissertation, Vol. Graduate school of hansung university koreaGoogle Search
2 
Lee J. I., 2017, A Study on the Characteristics of Housing Transfer and the Change of Ownership Structure after Retirement, Korean Ph.D. dissertation Graduate School of Jungbu University KoreaGoogle Search
3 
Ministry of Land , 2019, Infrastructure and Transport, Zero Energy Building Spread PolicyGoogle Search
4 
Zhong X., Hu M., Deetman S., Rodrigues J. F. D., Lin H. X., Tukker A., Behrens P., 2021, The evolution and future perspectives of energy intensity in the global building sector 1971-2060, J. Clean. Prod, Vol. 305, pp. 127098DOI
5 
Lin T. P., Lin F. Y., Wu P. R., Hämmerle M., Höfle B., Bechtold S., Hwang R. L., Chen Y. C., 2017, Multiscale analysis and reduction measures of urban carbon dioxide budget based on building energy consumption, Energy Build, Vol. 153, pp. 356-367DOI
6 
Zhang S., Xu W., Wang K., Feng W., Athienitis A., Hua G., Okumiya M., Yoon G., Cho D. W., Iyer-Raniga U., Mazria E., Lyu Y., 2020, Scenarios of energy reduction potential of zero energy building promotion in the Asia-Pacific region to year 2050 Energy, Vol. 213, pp. 118792DOI
7 
Zhang H., Hewage K., Karunathilake H., Feng H., Sadiq R., 2021, Research on policy strategies for implementing energy retrofits in the residential buildings, J. Build. Eng, pp. 103161DOI
8 
Tian Z., Shi X., Hong S. M., 2021, Exploring data-driven building energy-efficient design of envelopes based on their quantified impacts, J. Build. Eng, Vol. 42, pp. 103018DOI
9 
Jiang Z., Risbeck M. J., Ramamurti V., Murugesan S., Amores J., Zhang C., Lee Y. M., Drees K. H., 2021, Building HVAC control with reinforcement learning for reduction of energy cost and demand charge, Energy Build, Vol. 239, pp. 110833DOI
10 
Duran Ö., Lomas K. J., 2021, Retrofitting post-war office buildings: Interventions for energy efficiency improved comfort productivity and cost reduction, J. Build. Eng, Vol. 42DOI
11 
Stephan A., Stephan L., 2016, Life cycle energy and cost analysis of embodied operational and user-transport energy reduction measures for residential buildings, Appl. Energy, Vol. 161, pp. 445-464DOI
12 
Cho H. M., Park J. H., Wi S., Chang S. J., Yun G. Y., Kim S., 2019, Energy retrofit analysis of cross-laminated timber residential buildings in Seoul Korea: Insights from a case study of packages, Energy Build, Vol. 202, pp. 109328DOI
13 
Feehan A., Nagpal H., Marvuglia A., Gallagher J., 2021, Adopting an integrated building energy simulation and life cycle assessment framework for the optimisation of facades and fenestration in building envelopes, J. Build. Eng, pp. 103138DOI
14 
Huang J., Wang S., Teng F., Feng W., 2021, Thermal performance optimization of envelope in the energy-saving renovation of existing residential buildings, Energy Build, Vol. 247, pp. 111103DOI
15 
Lin Y. H., Der Lin M., Tsai K. T., Deng M. J., Ishii H., 2021, Multi-objective optimization design of green building envelopes and air conditioning systems for energy conservation and CO2 emission reduction, Sustain. Cities Soc, Vol. 64, pp. 102555DOI
16 
Rabani M., Madessa H. B., Nord N., 2021, Achieving zero-energy building performance with thermal and visual comfort enhancement through optimization of fenestration envelope shading device and energy supply system, Sustain. Energy Technol. Assessments, Vol. 44DOI
17 
Mainini,A. G., Bonato D., Poli T., Speroni A., 2015, Lean Strategies for Window Retrofit of Italian Office Buildings: Impact on Energy Use Thermal and Visual Comfort, Energy Procedia, Vol. 70, pp. 719-728DOI
18 
Marino C., Nucara A., Pietrafesa M., 2017, Does window-to-wall ratio have a significant effect on the energy consumption of buildings? A parametric analysis in Italian climate conditions, J. Build. Eng, Vol. 13, pp. 169-183DOI
19 
Park J. H., Wi S., Chang S. J., Kim S., 2020, Analysis of energy retrofit system using latent heat storage materials applied to residential buildings considering climate impacts, Appl. Therm. Eng, Vol. 169, pp. 114904DOI
20 
Park J. H., Lee J., Wi S., Jeon J., Chang S. J., Chang J. D., Kim S., 2019, Optimization of phase change materials to improve energy performance within thermal comfort range in the South Korean climate, Energy Build, Vol. 185, pp. 12-25DOI
21 
Khetib Y., Gari A., Kalbasi R., 2021, Introducing two scenarios to reduce building energy usage: PCM installation and integrating nanofluid solar collectors with DHW system, J. Taiwan Inst. Chem. Eng, pp. 1-11DOI
22 
European Committee for Standardization , 2000, EN 13829: 2000 Thermal performance of buildings Determination of air permeablity of buildings-Fan pressurization methodGoogle Search
23 
ASHRAE , 2015, ASHRAE Handbook-HVAC Applications, Chapter 53: Fire and Smoke Control, pp. 53.12-53.13Google Search
24 
American Society for Testing and Materials , 2010, ASTM E779-10 Standard Test Method for Determining Air Leakage Rate by Fan PressurizationGoogle Search
25 
ISO , 2008, ISO13790 International Standard: Energy performance of buildings-Calculation of energy use for space heating and coolingGoogle Search
26 
Passive House Institute Korea , http://www.phiko.kr/bbs/board.php?bo_table=z3_05&wr_id=308Google Search
27 
Passive House Institute(PHI) , https://passivehouse.com/04_phpp/04_phpp.htm#PH9Google Search