JKCI
Journal of
the Korea Concrete Institute
KCI
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ISSN : 1229-5515 (Print)
ISSN : 2234-2842 (Online)
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Journal of the Korea Concrete Institute
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J Korea Concr Inst.
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2026-04
(Vol.38 No.2)
10.4334/JKCI.2026.38.2.211
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REF
References
1
ACI (2021) ACI CODE-562-21: Assessment, Repair, and Rehabilitation of Existing Concrete Structures - Code and Commentary.
American Concrete Institute (ACI)
Farmington Hills, MI, US
2
ACI (2021) ACI PRC-214.4-21: Guide for Obtaining Cores and Interpreting Compressive Strength Results.
American Concrete Institute (ACI)
Farmington Hills, MI, US
3
ASCE (2017) Seismic Evaluation and Retrofit of Existing Buildings (ASCE/SEI 41-17).
American Society of Civil Engineers/Structural Engineering Institute
Reston, VA
4
Blom, G. (1958) Statistical Estimates and Transformed Beta-Variables (1st ed.).
John Wiley & Sons
5
Breysse, D., Romao, X., Alwash, M., Sbartai, Z. M., and Luprano, V. A. (2020) Risk Evaluation on Concrete Strength Assessment with NDT Technique and Conditional Coring Approach.
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6
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7
CEN (2019) Assessment of In-Situ Compressive Strength in Structures and Precast Concrete Components (EN 13791:2019).
European Committee for Standardization (CEN)
Brussels
8
JCI (2014) Guideline for Evaluation of the Performance of Existing Concrete Structures.
Japan Concrete Institute (JCI)
Tokyo
9
KATS (2008) Testing Method for Rebound Number to Conclude Compressive Strength of Concrete (KS F 2730).
Korea Agency for Technology and Standards (KATS), Korea Standard Association (KSA)
Seoul, Korea (In Korean)
10
KATS (2023) Testing Method for Velocity of Ultrasonic Pulses to Conclude Compressive Strength of Concrete (KS F 2731).
Korea Agency for Technology and Standards (KATS), Korea Standard Association (KSA)
Seoul, Korea (In Korean)
11
KCI (2021) Evaluation Standard for the Safety of Existing Concrete Structures (KDS 14 20 90).
Ministry of Land, Infrastructure and Transport (MOLIT), Korea Concrete Institute (KCI)
Sejong, Korea (In Korean)
12
KISTEC (2024) Detailed Guidelines for Facility Safety and Maintenance.
Korea Infrastructure Safety and Technology Corporation (KISTEC)
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13
Kwon, S. H., Lee, J. S., and Kim, H. K. (2024) On Determination Protocols of Characteristic In-Situ Compressive Strength of Concrete for Existing Structure: Case Study with Core Samples from Actual Bridges.
Case Studies in Construction Materials
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14
Kwon, S. H., Lee, J. S., Ji, G. B., and Kim, H. K. (2025) Consideration on Application of Nondestructive Test to Estimate In-Situ Compressive Strength of Concrete: A Case Study.
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19(1), 19.
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MoE (2021) Manual for Seismic Performance Evaluation and Retrofit of School Facilities.
Korea Institute of Educational Facility Safety. Ministry of Education (MoE)
Jincheon (In Korean)
16
Saleh, E., Tarawneh, A., Dwairi, H., and AlHamaydeh, M. (2022) Guide to Non-Destructive Concrete Strength Assessment: Homogeneity Tests and Sampling Plans.
Journal of Building Engineering
49, 104047.
17
Sefrin, R., and Glock, C. (2022) Characteristic Concrete Compressive Strength of Existing Structures—Evaluation of EN 13791:2019 for Small Sample Sizes.
Structural Concrete
23(2), 822-835.
18
Yuva, Y. (2023) Low-Strength Concrete Properties in Existing Structures Using NDT and Core Test Results.
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76, 107281.