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首页> 外文期刊>Proceedings of the International Conference on Coastal Engineering >EFFECTS OF WATER LEVEL VARIATIONS ON THE STABILITY OF ROCK ARMOURED SLOPES
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EFFECTS OF WATER LEVEL VARIATIONS ON THE STABILITY OF ROCK ARMOURED SLOPES

机译:水位变化对岩石铠装边坡稳定性的影响

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摘要

Physical model tests on the stability of rock armoured slopes have been performed to demonstrate the importance of water level variations during a storm, due to a tide or a storm surge. For the stability of rock armoured slopes also the importance of the sequence of storms at various water levels has been studied. The test results indicate that a smooth sinusoidal water level variation leads to an increase in damage compared to the same wave conditions at a constant water level. Furthermore, a stepwise approach of the sinusoidal water level elevation leads to other results than the approach with a continuous water level variation, whereas the continuous water level variation resembles the peak of a storm or the tidal water level variation better than a stepwise approach. If storms with different water levels attack the armour layer, the damage is generally smaller than if all storms attack the armour layer at the same water level. Furthermore, the results have been discussed based on earlier analyses where the statistics of rock armoured slopes have been addressed and the importance of the length effect has been illustrated using a method to apply results from physical model tests to real structures.
机译:已对装甲岩质边坡的稳定性进行了物理模型测试,以证明由于潮汐或风暴潮而在暴风雨期间水位变化的重要性。为了提高装甲岩质边坡的稳定性,还研究了各种水位下的暴风雨序列的重要性。测试结果表明,与恒定水位下相同的波浪条件相比,平滑的正弦水位变化会导致损伤增加。此外,与采用连续水位变化的方法相比,采用正弦水位升高的逐步方法还可以得到其他结果,而连续水位变化比风暴方法更好地类似于风暴的峰值或潮汐水位变化。如果不同水位的暴风雨袭击装甲层,则损失通常要小于所有风暴都在相同水位下袭击装甲层的损失。此外,已经基于较早的分析讨论了结果,其中分析了装甲岩质边坡的统计数据,并使用了将物理模型测试的结果应用于实际结构的方法,说明了长度效应的重要性。

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