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Calculating Stability Factor Using Linear Sliding Method Is Not Suitable for All Sandy Soil Slopes

机译:使用线性滑动法计算稳定性因子不适用于所有砂土斜坡

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To analyze the reasonable cohesion range of slope stability factor calculated using linear sliding method, different internal friction angles (20°,30°,40°) and cohesion (≤10kPa) of 36 slopes were calculated using linear sliding method, simplified Bishop method and strength reduction finite element method. The results show that, simplified Bishop method and the strength reduction finite element method are close to the stability factors; linear sliding method when cohesion is not considered is conservative, linear sliding method when cohesion is considered is partial to risk; calculating stability factor using linear sliding method is not suitable for all sandy soil slopes, only when the cohesion values not more than 1.5 kPa, the calculation results of linear sliding method are in accordance with engineering practice.
机译:为了分析使用线性滑动方法计算的斜坡稳定性因子的合理凝聚范围,使用线性滑动法,简化主题方法和均匀的主题和36个斜坡的不同内部摩擦角(20°,30°,40°)和凝聚力(≤10kPa)的粘合(≤10kpa)。 强度减少有限元法。 结果表明,简化的主教方法和强度减少有限元方法接近稳定性因素; 线性滑动法在未考虑内聚力时是保守的,线性滑动方法当被认为是凝聚力的情况下是局部风险; 使用线性滑动方法计算稳定性因子不适用于所有砂土斜坡,只有当凝聚率不超过1.5kPa时,线性滑动方法的计算结果符合工程实践。

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