TECHNICAL PAPERS
Jan 1, 1996

Liquefaction of Reclaimed Island in Kobe, Japan

Publication: Journal of Geotechnical Engineering
Volume 122, Issue 1

Abstract

Widespread liquefaction occurred in Kobe, Japan, during the 1995 Hyogoken-Nanbu earthquake. At the reclaimed Port Island in Kobe, the observed large-scale liquefaction was documented by acceleration records from a downhole seismic array. Four accelerometers recorded the soil stratum response, from the ground surface down to a depth of 83 m. These recorded accelerations are used here to obtain direct estimates of the corresponding seismic shear stress and strain histories within the soil layers, which shed light on (1) the site seismic response during liquefaction and associated loss of soil stiffness at shallow depths near the ground surface; and (2) the virtually linear site response at deeper elevations. Response of the liquefied upper layer is characterized by cycles of large shear strain and very small shear stress. Conversely, the lower strata exhibited no sign of stiffness degradation throughout the earthquake. A computational simulation of this case history is performed in order to assess the mechanisms of site amplification and excess pore-pressure buildup. The results of this study demonstrate that acceleration histories recorded by downhole arrays represent a valuable direct source of information on site response during seismic excitation.

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References

1.
Architectural Institute of Japan. (1995). Preliminary reconnaissance report of the 1995 Hyogoken-Nanbu Earthquake. Tokyo, Japan.
2.
Arulanandan, K., and Scott, R. F., eds. (1993). “Verification of numerical procedures for the analysis of soil liquefaction problems, Vol. 1.”Proc., Int. Conf. on the Verification of Numer. Procedures for the Anal. of Soil Liquefaction Problems, A. A. Balkema, Rotterdam, The Netherlands.
3.
Arulanandan, K., and Scott, R. F., eds. (1994). “Verification of numerical procedures for the analysis of soil liquefaction problems, Vol. 2.”Proc., Int. Conf. on the Verification of Numer. Procedures for the Anal. of Soil Liquefaction Problems, A. A. Balkema, Rotterdam, The Netherlands.
4.
Bardet, J. P., Oka, F., Sugito, M., and Yashima, A. (1995). “The great Hanshin Earthquake disaster.”Prelim. Investigation Rep., Univ. of Southern California, Los Angeles, Calif.
5.
Bennett, M. J., McLaughlin, P. V., Sarmiento, J. S., and Youd, T. L. (1984). “Geotechnical investigation of liquefaction sites, Imperial Valley, California.”Open-File Rep. 84-252, U.S. Geological Survey, Denver, Colo.
6.
Chang, C.-Y., Mok, C. M., Power, M. S., and Tang. Y. K. (1991). “Analysis of ground response data at Lotung large-scale soil-structure interaction experiment site.”Rep. No. NP-7306-SL, Electric Power Res. Inst. (EPRI), Palo Alto, Calif.
7.
Comartin, C. D., Greene, M., and Tubbesing, S. K., eds. (1995). “The Hyogo-Ken Nanbu Earthquake, great Hanshin Earthquake disaster, January 17, 1995.” Preliminary Reconnaissance Rep., Earthquake Engrg. Res. (EERI), Oakland, Calif.
8.
Dobry, R., Elgamal, A.-W., Baziar, M., and Vucetic, M. (1989). “Pore pressure and acceleration response of wildlife site during the 1987 earthquake.”Proc., 2nd US-Japan Workshop on Soil Liquefaction, T. D. O'Rourke and M. Hamada, eds., Nat. Ctr. of Earthquake Engrg. Res., Buffalo, N.Y., 145–160.
9.
Dobry, R., Ladd, R. S., Yokel, F. Y., Chung, R. M., and Powell, D. (1982). “Prediction of pore water pressure buildup and liquefaction of sands during earthquakes by the cyclic strain method.”Nat. Bureau of Standards Build. Sci. Ser., 138, U.S. Dept. of Commerce, Washington, D.C.
10.
Elgamal, A.-W., and Zeghal, M. (1992). “Analysis of wildlife site liquefaction during the 1987 Superstition Hills Earthquake.”Proc., 4th U.S.-Japan Workshop on Earthquake Resistant Des. of Lifeline Fac. and Countermeasures against Soil Liquefaction, M. Hamada and T. O'Rourke, eds., Tokai Univ. Pacific Ctr., Hawaii, 87–96.
11.
Finn, W. D. L., Ventura, C. E., and Wu, G. (1993). “Preliminary studies of ground motions at Treasure Island and Yerba Buena sites during the 1989 Loma Prieta Earthquake.”Proc., 3rd Int. Conf. on Case Histories in Geotech. Engrg., S. Prakash, ed., Univ. of Missouri-Rolla, Mo., 1781–1788.
12.
Holzer, T. L., Youd, T. L., and Hanks, T. C.(1989). “Dynamics of liquefaction during the 1987 Superstition Hills, California, Earthquake.”Sci., 244, 56–59.
13.
Hryciw, R. D., Rollins, K. M., Homolka, M., Shewbridge, S. E., and McHood, M. (1991). “Soil amplification at Treasure Island during the Loma Prieta Earthquake.”Proc., 2nd Int. Conf. on Recent Adv. in Geotech. Earthquake Engrg. and Soil Dynamics, S. Prakash, ed., Vol. II, Univ. of Missouri-Rolla, Mo., 1679–1685.
14.
Ishihara, K. (1985). “Stability of natural deposits during earthquakes.”Proc., 11th Int. Conf. on Soil Mech. and Found. Engrg., A. A. Balkema Publishers, Rotterdam, The Netherlands.
15.
Iwasaki, Y. (1995). “Geological and geotechnical characteristics of Kobe area and strong ground motion records by 1995 Kobe Earthquake, Tsuchi-to-Kiso.”Japanese Soc. of Soil Mech. and Found. Engrg., 43(6), 15–20 (in Japanese).
16.
Koga, Y., and Matsuo, O.(1990). “Shaking table tests of embankments resting on liquefiable sandy ground.”Soils and Found., 30(4), 162–174.
17.
Kokusho, T., and Sato, K. (1995). “Soil amplification in Great Hanshin Earthquake.”Proc., 3rd Int. Conf. on Recent Adv. in Geotech. Earthquake Engrg. and Soil Dynamics, S. Prakash, ed., Univ. of Missouri-Rolla, Mo.
18.
Nakakita, Y., and Watanabe, Y. (1981). “Soil stabilization by preloading in Kobe Port Island.”Proc., 9th Int. Conf. on Soil Mech. and Found. Engrg., Japanese Soc. of Soil Mech. and Found. Engrg., Tokyo, Japan, 611–622.
19.
National Center for Earthquake Engineering Research (NCEER). (1995). Preliminary Report from the Hyogoken-Nanbu Earthquake of January 17, 1995, Nat. Ctr. for Earthquake Engrg. Res. Bull., SUNY, Buffalo, N.Y., 9(1).
20.
National Research Council. (1985). Liquefaction of soils during earthquakes . Committtee on Earthquake Engrg., National Academy Press, Washington, D.C.
21.
O'Rourke, T. D. (1995). “Geotechnical effects.”Preliminary Rep. from the Hyogoken-Nanbu Earthquake of January 17, 1995; Nat. Ctr. for Earthquake Engrg. Res. Bull., SUNY, Buffalo, N.Y., 9(1).
22.
Seed, H. B., Idriss, I. M., and Arango, I.(1983). “Evaluation of liquefaction potential using field performance data.”J. Geotech. Engrg., ASCE, 109(3), 458–482.
23.
Seed., R. B., et al. (1990). “Preliminary report on the principal geotechnical aspects of the October 17, 1989, Loma Prieta Earthquake.”Rep. No. EERC-90/05, Earthquake Engrg. Res. Ctr. (EERC), Univ. of California, Berkeley, Calif.
24.
Sitar, N., ed. (1995). “Geotechnical reconnaissance of the effects of the January 17, 1995, Hyogoken-Nanbu Earthquake Japan.”Rep. No. UCB/EERC-95/01, Earthquake Engrg. Res. Ctr. (EERC), Univ. of California, Berkeley, Calif.
25.
Somerville, P. (1995). “The January 17, 1995 Hyogoken-Nanbu (Kobe) Earthquake: geoscience and geotechnical aspects.”Rep., Woodward-Clyde Federal Services, Pasadena, Calif.
26.
Taboada, V. M., and Dobry, R. (1993). “Experimental results of model 1 at RPI.”Proc., Int. Conf. on the Verification of Numer. Procedures for the Anal. of Soil Liquefaction Problems, K. Arulanandan and R. F. Scott, eds., Vol. 1, A. A. Balkema, Rotterdam, The Netherlands, 3–17.
27.
Thilakaratne, V., and Vucetic, M. (1990). “Analysis of seismic response at the imperial wildlife array in 1987.”Proc., 4th US Nat. Conf. on Earthquake Engrg., Earthquake Engrg. Res. Inst. (EERI), Oakland, Calif., 773–782.
28.
Vucetic, M. (1986). “Pore pressure buildup and liquefaction at level sandy sites during earthquakes,” PhD thesis, Dept. of Civ. Engrg., Rensselaer Polytechnic Inst., Troy, N.Y.
29.
Vucetic, M., and Dobry, R. (1988). “Cyclic triaxial strain-controlled testing of liquefiable sands.”Spec. Tech. Publ. 977, ASTM, Philadelphia, Pa., 475–485.
30.
Youd, T. L., and Holzer, T. L.(1994). “Piezometer performance at the wildlife liquefaction site.”J. Geotech. Engrg., ASCE, 120(6), 975–995.
31.
Zeghal, M., and Elgamal, A.-W. (1993). “Lotung site: downhole seismic data analyses.”Rep., Civ. Engrg. Dept., Rensselaer Polytechnic Inst., Troy, N.Y.
32.
Zeghal, M., and Elgamal, A.-W.(1994). “Analysis of site liquefaction using earthquake records.”J. Geotech. Engrg., ASCE, 120(6), 996–1017.
33.
Zeghal, M., Elgamal, W.-W., Tang, H. T., and Stepp, J. C.(1995). “Lotung downhole array. II: evaluation of site nonlinear properties.”J. Geotech. Engrg., ASCE, 121(4), 363–378.
34.
Zorapapel, G. T., and Vucetic, M.(1994). “The effect of pore-pressure on ground motion.”Earthquake Spectra, 10(2), 403–438.

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Go to Journal of Geotechnical Engineering
Journal of Geotechnical Engineering
Volume 122Issue 1January 1996
Pages: 39 - 49

History

Published online: Jan 1, 1996
Published in print: Jan 1996

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Authors

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Ahmed-W. Elgamal, Member, ASCE
Assoc. Prof., Dept. of Civ. Engrg., Rensselaer Polytechnic Inst., Troy, NY 12180.
Mourad Zeghal, Associate Member, ASCE
Res. Assoc., Dept. of Civ. Engrg., Rensselaer Polytechnic Inst., Troy, NY.
Ender Parra
Grad. Student, Dept. of Civ. Engrg., Rensselaer Polytechnic Inst., Troy, NY

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