Acknowledgement
이 성과는 정부(과학기술정보통신부)의 재원으로 한국연구재단의 지원을 받아 수행된 연구임. 과제번호:NRF-2020R1A2C1102585
References
- Albatici, R., Passerini, F., Tonelli, A. M., & Gialanella, S. (2013). Assessment of the thermal emissivity value of building materials using an infrared thermovision technique emissometer. Energy and Buildings, 66, 33-40, https://doi.org/10.1016/j.enbuild.2013.07.004
- Asdrubali, F., D'Alessandro, F., Baldinelli, G., & Bianchi, F. (2014). Evaluating in situ thermal transmittance of green buildings masonries-a case study, Case Studies in Construction Materials, 1, 53-59, https://doi.org/10.1016/j.cscm.2014.04.004
- Bros-Williamson. J., Garnier, C., & Currie, J., I. (2016). A longitudinal building fabric and energy performance analysis of two homes built to different energy principles, Energy and Buildings, 130, 578-591, https://doi.org/10.1016/j.enbuild.2016.08.052
- Gaspar, K., Casals, M., & Gangolells, M. (2016). A comparison of standardized calculation methods for in situ measurements of facades U-value. Energy and Buildings, 130, 592-599, https://doi.org/10.1016/j.enbuild.2016.08.072
- Gaspar, K., Casals, M., & Gangolells, M. (2018). In situ measurement of facades with a low U-value: avoiding deviations. Energy and Buildings, 170, 61-73, https://doi.org/10.1016/j.enbuild.2018.04.012
- Moon, J.H., Lee, Y.J., Ko, M.J., Choi, D.S., & Kim, Y.S. (2021). Analysis of convergence conditions for the variance of indoor and outdoor temperature differences of In-site thermal resistance by average method, The Korean Society of Living Environmental System, 28(1), 95-102, http://dx.doi.org/10.21086/ksles.2021.2.28.1.95
- Choi, D.S., & Ko, M.J. (2019). Analysis of convergence characteristics of average method regulated by ISO 9869-1 for evaluating in situ thermal resistance and thermal transmittance of opaque exterior walls. Energies, 12(10), 1989, https://doi.org/10.3390/en12101989
- International Organization for Standardization (2014). Building Elements - In-Situ Measurement of Thermal Resistance and Thermal Transmittance - Part 1: Heat Flow Meter. (ISO Standard No. 9869-1). Retrieved from https://www.iso.org/standard/59697
- International Organization for Standardization (2017). Building Components and Building Elements - Thermal Resistance and Thermal Transmittance - Calculation Method. (ISO Standard No. 6946). Retrieved from https://www.iso.org/standard/65708
- Ko, M.J., Lee, Y.J., & Choi, D.S. (2018). Convergence analysis of in-situ thermal transmittance of apartment house opaque exterior wall in winter season by average method of ISO 9869-1. The Korean Society of Living Environmental System, 25(5), 603~610, http://dx.doi.org/10.21086/ksles.2018.10.25.5.603
- Rubeis, T., Evangelisti, L., Guattari, C., Paoletti. D., Asdrubali, F., & Ambrosini, D. (2022). How do temperature differences and stable thermal conditions affect the heat flux meter (HFM) measurements of walls? laboratory experimental analysis, Energies, 15(13), 4746, https://doi.org/10.3390/en15134746