JKSCE
KSCE JOURNAL OF CIVIL AND
ENVIRONMENTAL ENGINEERING RESEARCH
KSCE
Contact
ISSN : 1015-6348 (Print)
ISSN : 2799-9629 (Online)
Mobile QR Code
Journal of the Korean Society of Civil Engineers
ISO Journal Title
KSCE J. Civ. Environ. Eng. Res.
Open Access, Bi-monthly
Main Menu
Main Menu
최근호
Current Issue
논문집
Journal Archive
저널소개
About Journal
편집위원회
Editorial Board
논문투고안내
For Authors and Reviewers
윤리규정
Publication Ethics
Principles of Transparency and Best Practice
Business Model
연락처
Contact Info
논문투고
E-submission
Journal Search
Home
All Issues
2025-12
(v.45 n.6)
10.12652/Ksce.2025.45.6.0631
Journal XML
XML
PDF
INFO
REF
References
1
(2001), Guidelines for the Design of Buried Steel Pipe
2
(1984), Guidelines for the Seismic Design of Oil and Gas Pipeline Systems
3
Carels F., Bube S., Kaltschmitt M. (2025). "Renewable energy supply via carbon-based molecules – A techno-economic assessment of various import pathways", International Journal of Hydrogen Energy, Vol. 148, pp. 149938
4
Chang K. D., Kim G., Kwag S., Eem S. (2023). "Data-driven digital twin for estimating response of pipe system subjected to seismic load and arbitrary loads", Journal of the Earthquake Engineering Society of Korea, Vol. 27, No. 6, pp. 231-236
5
Das A., Das T., Chaudhuri C. H., Choudhury D. (2024). "Integrated study on buried pipelines, co-seismic landslides, and magnitude conversion for 2023 Türkiye earthquake", Engineering Geology, Vol. 337, pp. 107599
6
(2006), Eurocode 8: Design of structures for earthquake resistance – Part 4: Silos, tanks and pipelines
7
(2007), Guidelines for Seismic Design of Buried Pipelines: Provisions with Commentary and Explanatory Examples
8
Jo Y. H., Choi M., Yang J. A., Jeon S. I., Jeon J. H. (2023). "Seismic impact analysis of buried citygas pipes through structural analysis", Journal of the Korean Institute of Gas, Vol. 27, No. 4, pp. 19-26
9
Kocaman E., Yağlı H., Yumrutaş R., Koç A., Koç Y. (2025). "Renewable energy supported and hydrogen energy storing off-grid smart city design", International Journal of Hydrogen Energy, Vol. 144, pp. 887-900
10
(2021), 2400-3 Detailed Technical Standards for Seismic Design and Performance Verification of Gas Facilities and Gas Pipelines
11
(2024), KGS GC204 Code for Seismic Design of Underground Gas Pipes
12
Kwak H., Park D., Lee J., Kang J. (2015). "Estimation of applicability of empirical design procedure for predicting seismic response of buried gas pipelines through 3d time-history analysis", Journal of the Korean Geotechnical Society, Vol. 31, No. 9, pp. 53-68
13
Lu Z. H., Kong Z. S., Cai C. H., Li C. Q. (2025). "A new method to predict seismic fragility of buried pipelines considering multiple failure modes", Tunnelling and Underground Space Technology, Vol. 166, pp. 107024
14
(2018), General Seismic Design Criteria, KDS 17 10 00
15
Ó Céileachair D., O’Shea R., Murphy J. D., Wall D. M. (2024). "A methodology for designing biogas pipelines", Fuel, Vol. 361, pp. 130633
16
O’Rourke M. J., Liu X. (1999), Response of Buried Pipelines Subject to Earthquake Effects (MCEER Monograph No. 3)
17
Sakurai A., Takahashi T. (1969). "Dynamic stresses of underground pipelines during earthquakes"
18
Shinozuka M., Kameda H., Koike T. (1983). "Ground strain estimation for seismic risk analysis", J. Eng. Mech. Diu. ASCE, Vol. 109, pp. 175-191
19
Wasim M., Djukic M. B. (2022). "External corrosion of oil and gas pipelines: A review of failure mechanisms and predictive preventions", Journal of Natural Gas Science and Engineering, Vol. 100, pp. 104467