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PRACTICAL DETERMINATION METHOD FOR SOIL PARAMETERS ADOPTED IN THE NEW PERFORMANCE BASED DESIGN CODE FOR PORT FACILITIES IN JAPAN

机译:基于新性能的日本港口设施设计规范中采用的土壤参数实用确定方法

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References(27) Cited-By(3) The Japanese design code for port facilities was revised in April 2007, and a performance-based reliability design method was introduced. This report introduces a new practical method, which has been adopted in the annex of the design code, to evaluate soil parameters. The new method uses a correction factor corresponding to the coefficient of data variation. In this method, the characteristic value automatically reflects the variation of the derived values in association with the testing method and the reliability of the data interpretation. Compared to the lower limit of 95% confidence interval, which is widely adopted in general design codes such as Eurocode 7 and JGS4001, the characteristic value determined by this method is conservative when the number of data entries is larger than 10. This tendency is caused by the concept, in which characteristic values always reflect the data variation, even though the number of data entries are significantly large. Generally, data variation in the depth profile can be reduced when the depth distribution is appropriately modeled. Also, data variation can be reduced by adopting a more reliable soil test. Accordingly, any efforts to reduce the variation are awarded in this new design code.
机译:参考文献(27)(3)于2007年4月修订了日本的港口设施设计规范,并引入了基于性能的可靠性设计方法。本报告介绍了一种新的实用方法,该方法已在设计规范的附件中采用,用于评估土壤参数。新方法使用与数据变化系数相对应的校正因子。在此方法中,特征值会自动结合测试方法和数据解释的可靠性来反映派生值的变化。与欧洲规范7和JGS4001等通用设计规范中广泛采用的95%置信区间的下限相比,当数据条目数大于10时,此方法确定的特征值是保守的。根据这个概念,即使数据条目的数量非常大,特征值也总是反映数据变化。通常,当对深度分布进行适当建模时,可以减少深度分布中的数据变化。另外,通过采用更可靠的土壤测试可以减少数据变化。因此,在此新设计规范中授予了减少变化的任何努力。

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