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首页> 外文期刊>Coastal Engineering Journal >APPLICATION OF RELIABILITY DESIGN METHODS TO DONGHAE HARBOR BREAKWATER
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APPLICATION OF RELIABILITY DESIGN METHODS TO DONGHAE HARBOR BREAKWATER

机译:可靠性设计方法在东海港防波堤中的应用

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Reliability design methods have been developed for breakwater designs since the mid-1980s. The reliability design method is classified into three categories depending on the level of probabilistic concepts being employed, i.e. Level 1, 2, and 3 methods. Each method gives results in different forms, but all of them can be expressed in terms of probability of failure so that the difference can be compared among the different methods. In this study, we apply the reliability design methods to the stability of armor blocks and sliding of caissons of the breakwater of Donghae Harbor located in the east coast of Korea, which was constructed by traditional deterministic design methods to be damaged in 1987 and reinforced in 1991. Analyses are made for the breakwaters before the damage and after the reinforcement. The allowable probability of failure of a Tetrapod armor layer of 50 year's lifetime is proposed as 40% for existing stability formulas, whilst that for caisson sliding as 20% with the failure criterion for the cumulative sliding distance over the lifetime of 0.1 m. The probability of failure before the damage is much higher than the allowable value for both stability of armor blocks and sliding of caissons, indicating that the breakwater was under-designed. The probability of failure for the reinforced breakwater is lower than the allowable value, indicating that the breakwater became stable after the reinforcement. On the other hand, the results of different reliability design methods were in fairly good agreement, confirming that there is not much difference among the different methods.
机译:自1980年代中期以来,已经为防波堤设计开发了可靠性设计方法。可靠性设计方法根据所采用的概率概念的级别分为三类,即1、2和3级方法。每种方法都以不同的形式给出结果,但是所有结果都可以用失败的可能性来表示,以便可以比较不同方法之间的差异。在这项研究中,我们将可靠性设计方法应用于位于韩国东海岸的东海港防波堤的装甲砌块的稳定性和沉箱的滑动,这是通过传统的确定性设计方法建造的,于1987年受到破坏,并在1987年进行了加固。 1991年。对破坏之前和加固之后的防波堤进行了分析。对于现有的稳定性公式,建议将50年寿命的四足动物装甲层的允许失效概率设为40%,而对于沉箱滑动而言,其失效概率为20%(以寿命范围内的累积滑动距离为0.1 m)。破坏前的破坏概率远高于装甲块稳定性和沉箱滑动的允许值,这表明防波堤的设计不足。加筋的防波堤的破坏概率低于允许值,表明加筋后的防波堤变得稳定。另一方面,不同的可靠性设计方法的结果吻合得很好,证实了不同方法之间没有太大差异。

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