Research Archieve
Peer-reviewed Journal
Lee, M., & Kim, Y. (2022). Seismic retrofit for torsional irregularity of line-type traditional Korean timber structure. Journal of Architectural Institute of Korea [Accepted].
Ahn, C., Lee, M., & Kim, Y. (2022). Proposal of natural period simple formula for response spectrum analysis of Korean traditional timber structure. Journal of Architectural Institute of Korea [Accepted].
Lee, M., & Kim, Y. (2022). Classification and Evaluation of Torsional Irregularity of Line-Type Hanok Based on Plan Shape and Spatial Layout. Journal of Architectural Institute of Korea, 38(8), 255-262. (https://doi.org/10.5659/JAIK.2022.38.8.255)
Lee, M., & Kim, Y. (2022). Evaluation of torsional irregularity of Korean traditional timber house according to plan type. Journal of Architectural Institute of Korea, 38(7), 247-254. (https://doi.org/10.5659/JAIK.2022.38.7.247)
Lee, M., & Kim, Y. (2021). Review on the structural performance of Hanok focused on frame arrangement method. Journal of Architectural Institute of Korea, 37(8), 165-176. (https://doi.org/10.5659/JAIK.2021.37.8.165)
Lee, M., & Kim, Y. (2021). Comparative review on the horizontal strength of traditional timber structures according to frame types. Journal of Architectural Institute of Korea, 37(7), 183-194. (https://doi.org/10.5659/JAIK.2021.37.7.183)
Lee, M., & Kim, Y. (2020). Development of automated evaluation system for torsional irregularity of Hanok. Journal of Architectural Institute of Korea, 36(8), 173-180. (https://doi.org/10.5659/JAIK.2020.36.8.173)
Oral Conferences
1. Ahn, C., Lee, M., & Kim, Y. Proposal of period formula for Korean traditional timber structure through multiple regression analysis. Architectural Institute of Korea Autumn Conference, 2021.
2. Lee, M., & Kim, Y. A study on design factors of the torsional irregularity in L-type Hanok. Architectural Institute of Korea Autumn Conference, 2021.
3. Lee, M., & Kim, Y. Seismic retrofit of Korean traditional timber structure. Korea Institute for Structural Maintenance and Inspection Summer Conference, 2021.
4. Lee, M., & Kim, Y. A study on the structural performance of Hanok's frame according to frame types. Architectural Institute of Korea Spring Conference, 2021.
5. Lee, M., & Kim, Y. A study on the seismic retrofit method for line-shaped traditional Hanok. Korea Institute for Structural Maintenance and Inspection Winter Conference, 2020.
6. Lee, M., & Kim, Y. A trends on the domestic researches on lateral stiffness of joints and frames of traditional timber frame structure. Architectural Institute of Korea Autumn Conference, 2020.
7. Lee, M., & Kim, Y. Analysis on the torsional irregular characteristics of traditional Hanoks with rectangular plan and C-shape. Architectural Institute of Korea Spring Conference, 2020.
8. Lee, M., & Kim, Y. Analysis of Structural Typology for Line Shape Hanok. Architectural Institute of Korea Autumn Conference, 2019.
9. Lee, M., & Kim, Y. study on the structural planning of shear walls for improving seismic capacity of Hanok. Architectural Institute of Korea Spring Conference, 2019.
10. Lee, M., & Kim, Y. Analysis on the torsional irregular characteristics of traditional Hanok in accordance with plan-shape. Korea Institute for Structural Maintenance and Inspection Winter Conference, 2019.
11. Lee, M., & Kim, Y. A study on the development planning of structural check software for long-span Hanok. Architectural Institute of Korea Spring Conference, 2018.
Technology Development of Design and Construction for Large Space Hanok over 10 meters, Ministry of Land, Infrastructure and Transport Affairs of the Korean Government, Graduate Researcher, Jan. 2017 – Dec. 2021.
National Historical and Cultural Property Enumeration Survey, National Cultural Heritage Administration, Research assistance, Jan. 2021 – Dec. 2021.
Code & Structural Guideline
Certificate | Korea Institute for Structural Maintenance and Inspection
Supervise | Korea Agency for Infrastrucre Technology Advancement
Ministry of Land, Infrastructure and Transport
Released Date | Sep. 3, 2021
Position | Principal researcher (Graduate)
First, the purpose of this guideline(draft) is to help the understanding of the structure of Hanok for non-specialists in related fields easily carry out structural planning and structural design of Hanok.
Second, this guideline (draft) has been prepared for easy understanding by dealing with the main individual structural members of Hanok in a step-by-step from the main structural member(frame, wall) to overall structure(plan, elevation) .
Third, this guideline (draft) deals with not only general-sized Hanok but also large-space Hanok.
Finally, It is expected that the spread of Hanok will be possible through this guideline (draft).
(Korean Design Standard for Smaill-Sized Timber Buildings)
Certificate | Korea Institute for Structural Maintenance and Inspection
Supervise | Ministry of Land, Infrastructure and Transport
Released Date | Dec, 2019
Position | Assistant researcher (Undergraduate)
Developed Softwares
Step - 1 : Define plan type of Hanok (Line, L-type, T-type, C-type and Rectangular type)
Certificate | Korea Copyright Commission
Copyright | C-2019-023788
Released Date | Dec. 2019
Position | Developer (Graduate)
Language | Visual Studio
Abstract.
The implemented system can provide useful decision criteria on the seismic design of Hanok in early design stage, and can improve flexibility and accessibility on the design of Hanok by helping designer evaluate seismic resistant characteristics according to various plan configurations and frame variations.
Step - 2 : Define plan configuration and calculate mass center
Step - 3 : Define lateral stiffness of frames and walls
Step - 4 : Arrange lateral resistant elements and calculate stiffness center
Step - 5 : Calculate total eccentricity and allowable maximum eccentricity
Step - 6 : Evaluate torsional irregularity and print result
Korea copyright certification
(C2019-0237688)
Step - 1 : Define plan type of Hanok (Line, L-type, T-type, C-type and Rectangular type)
Certificate | Korea Copyright Commission
Copyright | C-2019-032755
Released Date | Dec. 2019
Position | Developer (Graduate)
Language | Visual Studio
Abstract.
Step - 2 : Arrange lateral resistant elements and calculate stiffness center
Step - 3 : Calculate total eccentricity and allowable maximum eccentricity
Research Reports
Certificate | Korea Institute for Structural Maintenance and Inspection
Supervise | Korea Agency for Infrastrucre Technology Advancement
Ministry of Land, Infrastructure and Transport
Released Date | Dec. 2021
Position | Principal researcher (Graduate)
Certificate | Korea Institute for Structural Maintenance and Inspection
Supervise | Korea Agency for Infrastrucre Technology Advancement
Ministry of Land, Infrastructure and Transport
Released Date | Dec. 2020
Position | Principal researcher (Graduate)
Certificate | Korea Institute for Structural Maintenance and Inspection
Supervise | Korea Agency for Infrastrucre Technology Advancement
Ministry of Land, Infrastructure and Transport
Released Date | Dec. 2019
Position | Assistant researcher (Undergraduate)
Certificate | Korea Institute for Structural Maintenance and Inspection
Supervise | Korea Agency for Infrastrucre Technology Advancement
Ministry of Land, Infrastructure and Transport
Released Date | Dec. 2018
Position | Assistant researcher (Undergraduate)
Certificate | Korea Institute for Structural Maintenance and Inspection
Supervise | Korea Agency for Infrastrucre Technology Advancement
Ministry of Land, Infrastructure and Transport
Released Date | Nov. 2018
Position | Assistant researcher (Undergraduate)