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Reliability-based design of caisson type pile for transmission line tower

机译:基于沉箱式输电线路塔的可靠性设计

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The design of foundation for the power transmission line tower is generally controlled by its uplift, compressive and horizontal bearing capacity to the wind load. In the present paper, the practical design formula are proposed based on the mechanical properties obtained from some proto-type field tests. They can evalaute the ultimate bearing capacities and the load-deformation relationships for the three direction loads. The reliability-based design method which wind loads and soil parameters are estimate as random variables is also shown using the developed bearing capacity formulas. Two kinds of probability of failure are considered. One is the probability which the load acting on the foundation will exceed the ultimate bearing capacity, the other is the probability which the deformation of foundation will exceed the allowable displacement for the stability of super structure. the optimization of the caisson type pile is carried out using the actual cost function. The optimum results are compared the results of the conventional design method.
机译:输电线路铁塔基础的设计通常由其对风荷载的升力,压缩力和水平承载力来控制。在本文中,根据一些原型现场测试获得的力学性能,提出了实用的设计公式。它们可以评估三个方向载荷的极限承载力和载荷-变形关系。使用已开发的承载力公式,还显示了基于可靠性的设计方法,该方法将风荷载和土壤参数估算为随机变量。考虑了两种故障概率。一种是作用在基础上的载荷将超过极限承载力的概率,另一种是基础的变形将超过上层建筑稳定性的允许位移的概率。沉箱式桩的优化是使用实际成本函数进行的。将最佳结果与常规设计方法的结果进行比较。

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