A comprehensive study method for lifeline system interaction under seismic conditions

Author:

Bao-Hua Yao,Li-Li Xie,En-Jie Huo

Publisher

Springer Science and Business Media LLC

Subject

Geophysics,Geotechnical Engineering and Engineering Geology

Reference22 articles.

1. Charles S, Scawthorn S E. 1993. Lifeline interaction and post-earthquake functionality: Case study for fire following earthquake [A]. In: Kawashima K, Sugita H eds.Proc of 5th US-Japan Workshop on Earthquake Disaster Prevention for Lifeline System [C]. Tsukuba Science City, Japan: Public Works Research Institute, 441–450.

2. China Japan-Earthquake Investigation Term. 1995.Japan Kobe Earthquake Investigation [M]. Beijing: Seismological Press, 51–58 (in Chinese).

3. Der Kiureghian A, Sackman J L, Hong K J. 1999. Seismic interaction in connected electrical substation Equipment [J].PEER Center News,2(4): 1–4.

4. Felix S W. 1998. Concentration, system modeling and telecommunications performance [A]. In: Schiff, Anshel J eds.Proc of the Workshop on Performance Criteria for Communication Services Under Earthquake Conditions, MCEER-98-0008 [C]. Buffalo, N.Y.: Multidisciplinary Center for Earthquake Engineering Research, 53–68.

5. Felix S W, Jeremy I. 1995. Effects of lifeline interaction on seismic performance of communications networks [A]. In: O’Rourke, Michael J eds.Proc of 4th U.S. Conference on Lifeline Earthquake Engineering, TCLEE Monograph No. 6 [C]. New York: American Society of Civil Engineers, 557–564.

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