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displaying 1 - 9 results in total 9

  • Andrus, R. D.; Chung, R. M.
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    Ground Improvement Techniques for Liquefaction Remediation Near Existing Lifelines.
    National Institute of Standards and Technology, Gaithersburg, MD
    NISTIR 5714
    NISTIR 5714
    October 1995
    87 p.

  • Andrus, R. D.; Chung, R. M.
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    Cost-Effective Ground Improvement for Liquefaction Remediation Near Existing Lifelines.
    National Institute of Standards and Technology, Gaithersburg, MD
    U.S./Japan Cooperative Program in Natural Resources. Panel on Wind and Seismic Effects. Joint Meeting, 27th. Proceedings. May 16-19, 1995, Tsukuma, Japan, 115-123 p., 1995

  • Andrus, R. D.; Stokoe, K. H., II
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    Preliminary Guidelines for Liquefaction Assessment Using Shear Wave Velocity.
    National Institute of Standards and Technology, Gaithersburg, MD; University of Texas, Austin
    NIST SP 904
    NIST SP 904
    August 1996
    U.S./Japan Natural Resources Development Program (UJNR). Wind and Seismic Effects. Joint Meeting of the U.S./Japan Cooperative Program in Natural Resources Panel on Wind and Seismic Effects, 28th. May 14-17, 1996, Gaithersburg, MD, Raufaste, N. J., Jr., Editors, 77-83 p., 1996

  • Andrus, R. D.; Chung, R. M.
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    Liquefaction Remediation Near Existing Lifeline Structures.
    National Institute of Standards and Technology, Gaithersburg, MD
    ['Technical Report NCEER-96-0012', 'NCEER Task Number 95-2702A']
    Technical Report NCEER-96-0012; NCEER Task Number 95-2702A
    Japan/U.S. Workshop on Earthquake Resistant Design of Lifeline Facilities and Countermeasures Against Soil Liquefaction, 6th Proceedings. National Center for Earthquake Engineering Research. June 11-13, 1996, National Center for Earthquake Engg. Res., NY, Tokyo, Japan, Hamada, M.; O'Rourke, T., Editors, 457-476 p., 1996

  • Andrus, R. D.
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    Surface Wave Method: A Tool for Lifeline Earthquake Engienering.
    National Institute of Standards and Technology, Gaithersburg, MD
    Earthquake Engineering Site Characterization. Research Needs Workshop Proceedings. Miscellaneous Paper GK-97-21. Appendix G. U.S. Army Corps of Engineers. Final Report. September 1997, U.S. Army Corps of Engineers, Vicksburg, MS, Koester, J. P.; Holmes, T. L., Editors, G1-G14 p., 1997

  • Andrus, R. D.; Stokoe, K. H., II
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    Liquefaction Resistance Based on Shear Wave Velocity.
    National Institute of Standards and Technology, Gaithersburg, MD; University of Texas, Austin
    Evaluation of Liquefaction Resistance of Soils. National Center for Earthquake Engineering Research (NCEER) Workshop. Proceedings. January 5-6, 1996, Salt Lake, UT, Youd, T. L.; Idriss, I. M., Editors, 89-128 p., 1997

  • Andrus, R. D.; Stokoe, K. H., II; Chung, R. M.; Bay, J. A.
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    Liquefaction Evaluation of Densified Sand at Approach to Pier 1 on Treasure Island, California, Using SASW Method.
    National Institute of Standards and Technology, Gaithersburg, MD; University of Texas, Austin; Utah State Univ., Logan
    NISTIR 6230
    NISTIR 6230
    October 1998
    80 p.

  • Andrus, R. D.; Stokoe, K. H., II; Chung, R. M.
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    Draft Guidelines for Evaluating Liquefaction Resistance Using Shear Wave Velocity Measurements and Simplified Procedures.
    National Institute of Standards and Technology, Gaithersburg, MD; University of Texas, Austin; Consulting Engineering, Potomac, MD
    NISTIR 6277
    NISTIR 6277
    March 1999
    134 p.

  • Andrus, R. D.; Stokoe, K. H., II
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    Liquefaction Evaluation Procedure Based on Shear Wave Velocity.
    National Institute of Standards and Technology, Gaithersburg, MD
    ISSD 0386-5878
    ISSD 0386-5878
    Wind and Seismic Effects. U.S./Japan Natural Resources Development Program (UJNR). Joint Meeting, 31st. Technical Memorandum of PWRI 3653. Proceedings. May 11-14, 1999, Tsukuba, Japan, 469-474 p., 1999