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首页> 外文期刊>Journal of Engineering Mechanics >Effect of Seismic Uplift Pressure on the Behavior of Concrete Gravity Dams with a Penetrated Crack
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Effect of Seismic Uplift Pressure on the Behavior of Concrete Gravity Dams with a Penetrated Crack

机译:地震抬升压力对具有穿透裂缝的混凝土重力坝性能的影响

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Proper consideration of the uplift pressure at the base of a concrete gravity dam is of great importance in practical engineering, since it is crucial to the safety of the dam, specifically for a cracked dam under seismic conditions. However, constant uplift pressure, which is suitable for the static case only, was adopted in almost all the seismic analyses of cracked concrete gravity dams. To adequately estimate the seismic behavior of cracked concrete gravity dams, a seismic uplift pressure model is proposed for a penetrated crack. In this model, the amount and the distribution of the uplift pressure along the assumed rigid crack walls are determined by the earthquake acceleration, the water heads, the aperture of the crack, and the opening/closing velocity. Application of the model to a typical concrete gravity dam with a penetrated crack at the base reveals that the seismic behavior of the dam is markedly affected by the seismic uplift pressure. In general, the residual downstream sliding is considerably enlarged compared to that of constant uplift pressure. Computations show that the seismic uplift pressure can be several times higher than the constant one, increasing the dynamic instability of the cracked dam. It is also revealed that the dynamic water flow plays the role of a wedge while the upper mouth of the crack is closing. When the dam rocks back to upstream, the uplift pressure increases until it is so high that the pivot at the toe is raised up and the whole dam loses its contact. Then the resultant uplift pressure remains constant until the dam is inclined to the upstream. During this period of time, the cracked dam is normally drifting towards the downstream due to the hydro pressure.
机译:在实际工程中,适当考虑混凝土重力坝底部的升压非常重要,因为这对坝的安全至关重要,特别是对于地震条件下的开裂坝。但是,几乎所有开裂的混凝土重力坝的地震分析都采用了仅适用于静态情况的恒定升力。为了充分估计开裂的混凝土重力坝的抗震性能,提出了一种针对穿透裂缝的地震抬升压力模型。在该模型中,沿着假定的刚性裂缝壁的抬升压力的大小和分布由地震加速度,水头,裂缝的开度和开/关速度决定。将模型应用到在底部具有穿透裂缝的典型混凝土重力坝中,发现该坝的地震行为受到地震上压力的显着影响。通常,与恒定上升压力相比,残余的下游滑动会大大扩大。计算表明,地震抬升压力可能是恒定压力的几倍,从而增加了裂坝的动态失稳。还显示出,当裂缝的上口闭合时,动态水流起楔形作用。当水坝向上游晃动时,上升压力会增加,直到达到如此高的程度,以至于脚趾的枢轴被抬起,整个水坝失去了接触。然后,最终的升压保持恒定,直到坝向上游倾斜。在这段时间里,由于水压,开裂的大坝通常向下游漂移。

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