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Subsurface Characterization at Ground Failure Sites in Adapazari, Turkey
Authors:Jonathan D Bray  Rodolfo B Sancio  Turan Durgunoglu  Akin Onalp  T Leslie Youd  Jonathan P Stewart  Raymond B Seed  Onder K Cetin  Ertan Bol  M B Baturay  C Christensen  T Karadayilar
Affiliation:1Professor, Dept. of Civil and Environmental Engineering, Univ. of California, Berkeley, CA?94720-1710.
2Project Engineer, Golder Associates Inc., 15603 W. Hardy Rd., Houston, TX?77060.
3Professor, Bogazi?i Univ., Istanbul, Turkey.
4Professor, Istanbul Kultur Univ., Istanbul, Turkey.
5Professor, Brigham Young Univ., Provo, UT?84602-4081.
6Associate Professor, Univ. of California, Los Angeles, CA?90095-1593.
7Assistant Professor, Middle Eastern Technical Univ., Ankara, Turkey.
8Doctoral Candidate, Sakarya Univ., 54040?Adapazari, Turkey.
9Senior Staff Engineer, GeoSyntec Consultants, Walnut Creek, CA?94597.
10Doctoral Candidate, Brigham Young Univ., Provo, UT?84602-4081.
11Engineer, ZETAS Earth Technology Corporation, 81150?Istanbul, Turkey.
Abstract:Ground failure in Adapazari, Turkey during the 1999 Kocaeli earthquake was severe. Hundreds of structures settled, slid, tilted, and collapsed due in part to liquefaction and ground softening. Ground failure was more severe adjacent to and under buildings. The soils that led to severe building damage were generally low plasticity silts. In this paper, the results of a comprehensive investigation of the soils of Adapazari, which included cone penetration test (CPT) profiles followed by borings with standard penetration tests (SPTs) and soil index tests, are presented. The effects of subsurface conditions on the occurrence of ground failure and its resulting effect on building performance are explored through representative case histories. CPT- and SPT-based liquefaction triggering procedures adequately identified soils that liquefied if the clay-size criterion of the Chinese criteria was disregarded. The CPT was able to identify thin seams of loose liquefiable silt, and the SPT (with retrieved samples) allowed for reliable evaluation of the liquefaction susceptibility of fine-grained soils. A well-documented database of in situ and index testing is now available for incorporating in future CPT- and SPT-based liquefaction triggering correlations.
Keywords:Cone penetration tests  Earthquakes  Fine-grained soils  Liquefaction  Silts  In situ tests  Subsurface environment  Turkey  
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