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Determination of Shaft and Base Resistance Factors for Drilled Shaft Embedded in Rock in Korea

机译:确定韩国埋在岩石中的井筒的井筒和基础阻力因子

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The Load Resistance Factor Design(LRFD) method was introduced about a decade ago and is being used increasingly in Korea in the geotechnical engineering field. The resistance factors suggested by AASHTO for drilled shafts also were introduced in Korea. However, since most bedrock conditions in Korea differ from those of the US in terms of weathering and strength, direct application of the AASHTO resistance factors for geotechnical design in Korea is thought to be inappropriate. Thus, appropriate resistance factors for the design of drilled shafts socketed into weathered rock in Korea were pursued in this study. Towards this aim, 22 cases of data for shaft resistance and 11 cases for base resistance were collected from the results of pile load tests performed at 13 different sites, and analyzed using a reliability-based approach wherein the target reliability index was set to 2.0. Obtained resistance factors ranged over 0.48-0.56 for the shaft resistance and 0.34-1.93 for the base resistance. When the target reliability was considered as 3.0, the resistance factors were evaluated as approximately one half of the shaft resistance and two thirds of the base resistance when the target reliability index was 2.0.
机译:负载抗力系数设计(LRFD)方法是在大约十年前引入的,并在韩国的岩土工程领域中得到越来越多的使用。韩国也介绍了AASHTO建议的钻杆阻力系数。但是,由于韩国的大多数基岩条件在耐候性和强度方面与美国不同,因此认为在韩国的岩土设计中直接应用AASHTO抵抗因子是不合适的。因此,在本研究中,寻求了适合于韩国风化岩石的钻探井筒设计的阻力系数。为了实现这一目标,从在13个不同地点进行的桩载荷测试结果中收集了22例轴阻力数据和11例基础阻力数据,并使用基于可靠性的方法进行了分析,其中将目标可靠性指标设置为2.0。所获得的电阻系数的轴电阻范围为0.48-0.56,基础电阻范围为0.34-1.93。当目标可靠性指标为3.0时,当目标可靠性指标为2.0时,电阻系数被评估为轴电阻的一半左右和基础电阻的三分之二。

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