CPTU SIMPLIFIED STRESS-BASED MODEL FOR EVALUATING SOIL LIQUEFACTION POTENTIAL
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概要
- 論文の詳細を見る
This paper presents a piezocone penetration test (CPTu) method for evaluating soil liquefaction potential covering a wider range of soil types than previous approaches and using simplified stress-based procedures. In the approach, the adjusted cyclic stress ratio is calculated with a recent formula created by Idriss and Boulanger, and the cyclic resistance ratio is determined as a function of both adjusted cone tip resistance (q_<t1N>) and soil behavior type index (I_c). The new method is established through artificial neural network learning of documented cases. One unique feature of this method is the inclusion of excess porewater pressure ratio (B_q) in the formulation of I_c as per Jefferies and Davies. The proposed method is shown to be more applicable to a wider range of soils, including geomaterials that were previously considered "too clay-rich to liquefy." The ability of this method to delineate liquefied cases from non-liquefied cases is clearly depicted with 3-D and 2-D graphs. Case studies of selected ground failure sites in Adapazari using the proposed method yield results that agree well with field observations in the 1999 Kocaeli earthquake.
- 社団法人地盤工学会の論文
著者
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CHEN Chien-Hsun
Department of Materials Science and Engineering, National Tsing Hua University
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Chen Chien-hsun
Department Of Civil Engineering Clemson University
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JUANG C.
Department of Civil Engineering, Clemson University
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MAYNE PAUL
School of Civil and Environmental Engineering, Georgia Institute of Technology
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Mayne Paul
School Of Civil And Environmental Engineering Georgia Institute Of Technology
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Juang C.
Department Of Civil Engineering Clemson University:department Of Civil Engineering National Central
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Juang C.
Department Of Civil Engineering Clemson University:department Of Civil Engineering National Central
関連論文
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- CPTU SIMPLIFIED STRESS-BASED MODEL FOR EVALUATING SOIL LIQUEFACTION POTENTIAL
- EVALUATING MODEL UNCERTAINTY OF AN SPT-BASED SIMPLIFIED METHOD FOR RELIABILITY ANALYSIS FOR PROBABILITY OF LIQUEFACTION
- LIQUEFACTION IN THE CHI-CHI EARTHQUAKE : EFFECT OF FINES AND CAPPING NON-LIQUEFIABLE LAYERS
- CORRELATIONS BETWEEN SHEAR WAVE VELOCITY AND CONE TIP RESISTANCE IN NATURAL CLAYS
- Effects of Ar/N2 Flow Ratio on Sputtered-AlN Film and Its Application to Low-Voltage Organic Thin-Film Transistors