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Reliability-Based Design of Basal Heave Stability for Braced Excavation Using Three Different Methods

机译:三种不同方法的基坑支护基坑稳定性基于可靠性的设计

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Terzaghi's (T), Bjerrum-Eide's (BE) and the slip circle (SC) methods are widely used to evaluate the basal heave stability in reliability-based design of braced excavations. The three methods produce different reliabilities for the same excavation problem. It is still unclear which of these methods is most conservative or most economical. Hence, this study compares the reliabilities of basal heave stability for the three methods for both wide and deep excavations. The probability of failure (P_f) for a given factor of safety (FS) and coefficient of variation (COV) for soil parameters is calculated using the first-order reliability method. The P_f - FS design charts for different methods are compared. The results demonstrate that the SC method is more conservative than the other two methods. For wide excavations, the same level of the factor of safety results in a much smaller P_f for the SC method than for the T method. For deep excavations, the P_f for the SC method is also smaller than for BE method. In addition, the P_f - FS design curves for T are more sensitive to the penetration depth of the wall than the other two methods. These results serve as a guideline for the method selection of basal heave stability evaluation in geotechnical practice.
机译:Terzaghi(T),Bjerrum-Eide(BE)和滑动圆(SC)方法被广泛用于评估基于支撑的可靠度设计中基坑的稳定性。对于相同的挖掘问题,这三种方法产生不同的可靠性。尚不清楚这些方法中哪一种最保守或最经济。因此,本研究比较了三种方法在宽基坑和深基坑中的基础起伏稳定性的可靠性。使用一阶可靠性方法计算给定安全系数(FS)的破坏概率(P_f)和土壤参数的变异系数(COV)。比较了不同方法的P_f-FS设计图。结果表明,SC方法比其他两种方法更为保守。对于宽基坑,安全系数的相同水平导致SC法的P_f比T法小得多。对于深基坑,SC法的P_f也比BE法小。另外,T的P_f-FS设计曲线比其他两种方法对壁的穿透深度更敏感。这些结果可为岩土工程中基础起伏稳定性评估方法的选择提供指导。

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