과제정보
이 성과는 정부(과학기술정보통신부)의 재원으로 한국연구재단의 지원을 받아 수행된 연구임. 과제번호: RS-2024-00344190
참고문헌
- Arman, H. (2015). Offsite manufacturing: a survey ofn the current status and risks of offsite construction in Iran, Journal of Civil Engineering and Architecture, 9, 141-152. https://doi.org/10.17265/1934-7359/2015.02.003
- Ballarini, I., & Corrado, V. (2012). Analysis of the building energy balance to investigate the effect of thermal insulation in summer conditions. Energy and Buildings, 52, 168-180. https://doi.org/10.1016/j.enbuild.2012.06.004
- Breesch, H., & Janssens, A. (2010). Performance evaluation of passive cooling in office buildings based on uncertainty and sensitivity analysis. Solar Energy, 84, 1453-1467. https://doi.org/10.1016/j.solener.2010.05.008
- Choi, B. H., Shin, D. I., & Song, S. Y. (2021). Comparison of Insulation Performance of Curtain Wall System with Conventional Rectangular Pipe Frame and Truss-shaped Insulation Frame. Journal of Korean Institute of Architectural Sustainable Environment and Building Systems, 15(1), 75-86.
- Demanuele, C., Tweddell T., & Davies, M. (2010, September 1-6). Bridging the gap between predicted and actual energy performance in schools. [Paper presentation]. World Renewable Energy Congress; World Renewable Energy Congress and Exhibition, 25-30, Abu Dhabi, UAE2010.
- Domı´nguez-Mun˜oz, F., Cejudo-Lo´pez, J. M., & Carrillo-Andre´s, A. (2010). Uncertainty in peak cooling load calculations, Energy and Buildings, 42(7), 1010-1018. https://doi.org/10.1016/j.enbuild.2010.01.013
- Hamby, D. M. (1994). A review of techniques for parameter sensitivity analysis of environmental models, Environmental Monitoring and Assessment, 32, 135-154. https://doi.org/10.1007/BF00547132
- Hygh, J. S., DeCarolis, J. F., Hill, D. B., & Ranji Ranjithan S. (2012). Multivariate regression as an energy assessment tool in early building design. Building and Environment, 57, 165-175. https://doi.org/10.1016/j.buildenv.2012.04.021
- International Organization for Standardization. (2017). Thermal bridges in building construction - Heat flows and surface temperatures - Detailed calculation. ISO 10211. https://www.iso.org/standard/65710.html https://doi.org/10.html
- International Organization for Standardization. (2017). Thermal performance of buildings - Transmission and ventilation heat transfer coefficients - Calculation method. ISO 13789. https://www.iso.org/standard/65713.html
- Joo, N. Y., & Song, S. Y. (2022). Insulation plan and analysis for curtain wall type PC(precast concrete) outer wall and floor joint of rahmen structure apartment built with PC for off-site construction. Journal of the Architectural Institute of Korea, 38(10), 241-248. https://doi.org/10.5659/JAIK.2022.38.10.241
- Joo, N. Y., & Song, S. Y. (2024, November 15). Comparison of insulation performance of RC vs, PC structures for exterior wall-floor joints of rahmen-structured Apartment Buildings [Paper presentation]. Proceedings of the 2024 Autumn Conference of the Korean Institute of Architectural Sustainable Environment and Building Systems, Gyeongju, South Korea.
- KIAEBS. (2020). S-13; Calculation method of thermal performance of thermal bridge vreaker applied to thermal bridge in building envelope. Korea Institute of Architectural Sustainable Environment and Building Systems.
- Kim, S. H. (2016). Comparison of sensitivity analysis methods for building energy simulation in early design phases: once-at-a-time(OAT) vs. variance-based methods, KIEAE Journal, 16(2), 17-22. https://doi.org/10.12813/kieae.2016.16.2.017
- Kim, Y. J., Kim, K. C., & Kim, C. S. (2013, November 2). A case study and characteristic of sensitivity analysis in building energy simulation model, [Paper presentation]. Proceedings of the 2013 Autumn Conference of the Korean Institute of Architectural Sustainable Environment and Building Systems, Seoul, South Korea.
- Kong, D. S., Chang, Y. S., & Huh, J. H. (2015). Selecting of the energy performance diagnosis items through the sensitivity analysis of existing buildings, Korean Journal of Air-Conditioning and Refrigeration Engineering, 27(7), 354-361. https://doi.org/10.6110/KJACR.2015.27.7.354
- Lam, J. C., & Hui, S. C. M. (1996). Sensitivity analysis of energy performance of office buildings, Building and Environment, 31(1), 27-39. https://doi.org/10.1016/0360-1323(95)00031-3
- Lang, A., Glass, J., & Goodier, C. I. (2016, September 5-7). Are housebuilders' production strategies a barrier to off site construction uptake in the UK? [Paper presentation]. Proceedings of the 32nd Annual ARCOM conference (ARCOM 2016), Manchester, UK.
- Lee, B. S., Sohn, J. R., & Kim, M. J. (2023). A review of the LH OSC PC apartmetn housing pilot projects, Magazine of the Korea Concrete Institute, 35(2), 65-75.
- Li, C. Z., Hong, J., Xue, F., Shen, G. Q., Xu, X., & Mok, M. K. (2016). Schedule risks in prefabrication housing production in Hong Kong: a social network analysis, Journal of Cleaner Production, 134, 482-494. https://doi.org/10.1016/j.jclepro.2016.02.123
- Li, L., Luan, H., Yin, X., Dou, Y., Dou, Y., & Li, Z. (2022). Understanding sustainability in off-site construction management; state of the art and future directions, Journal of Construction Engineering and Management, 148(11). 03122008.
- Ministry of Environment (2021, December 23), Submission of the Enhanced 2030 National Greenhouse Gas Reduction Target(NDC) to the UNFCCC Secretariat, KDI Economic Information and Education Center. https://eiec.kdi.re.kr/policy/materialView.do?num=221932
- Ministry of Land, Infrastructure and Transport (MLIT) (2016). Design Standard for Preventing Condensation in Apartment Buildings. Ministry of Land, Infrastructure and Transport(MLIT).
- Ministry of Land, Infrastructure and Transport (MLIT) (2020). Construction Standard of Energy Saving Environmental Friendly House. Ministry of Land, Infrastructure and Transport(MLIT).
- Ministry of Land, Infrastructure and Transport (MLIT) (2023). Commentary of Energy Saving Design Standards of Buildings. Ministry of Land, Infrastructure and Transport(MLIT).
- Ministry of Land, Infrastructure and Transport (MLIT) (2024). Energy Saving Design Standards of Buildings. Ministry of Land, Infrastructure and Transport(MLIT).
- Park, M., Ingawale-Verma, Y., Kim, W., & Ham, Y. (2011). Construction policymaking: with an example of singaporean government's policy to diffuse prefabrication to private sector. KSCE Journal of Civil Engineering, 15(5), 771-779. https://doi.org/10.1007/s12205-011-1243-4
- Rasouli, M., Ge, G., Simonson, C. J., & Besant, R. W. (2013). Uncertainties in energy and economic performance of HVAC systems and energy recovery ventilators due to uncertainties in building and HVAC parameters. Applied Thermal Engineering, 50(1), 732-742. https://doi.org/10.1016/j.applthermaleng.2012.08.021
- Tian, W. (2013). A review of sensitivity analysis methods in building energy analysis, Renewable and Sustainable Energy Reviews, 20, 411-419. https://doi.org/10.1016/j.rser.2012.12.014
- Yildiz, Y., Korkmaz, K., Göksal Özbalta, T., & Durmus Arsan, Z. (2012). An approach for developing sensitive design parameter guidelines to reduce the energy requirements of low-rise apartment buildings. Applied Energy, 93, 337-347. https://doi.org/10.1016/j.apenergy.2011.12.048
- Yoo, Y. S., Yi, D. H., Kim, S. S., & Part, C. S. (2020). Rational building energy assessment ussing glabal sensitivity analysis, Journal of the Architectural Institute of Korea Structure & Construction, 36(5), 177-185.
- Yoo, Y. S., Yi, D. H., & Part, C. S. (2021). Uncertainty in sensitivity analysis of architectural design variables for heating and cooling loads depending on usage scenarios, Journal of the Architectural Institute of Korea, 37(11), 247-253. https://doi.org/10.5659/JAIK.2021.37.11.247