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Pressures on a rubble-mound breakwater crown-wall for tsunami impact

机译:瓦砾堆的防波堤冠墙的压力对海啸的影响

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Rubble mound-breakwaters are commonly constructed with a parapet or crown-wall at the crest. The design of these superstructures depends on the expected storm wave load history throughout the service life cycle. In tsunami-prone areas, this design must include tsunami actions since their loads can definitely exceed those of storm waves. However, tsunami loads are rarely accounted for. This study aimed at incorporating tsunami actions in the design of crown-walls of rubble-mound breakwaters for the first time. Within this scope, laboratory experiments on a scaled model of a typical Mediterranean rubble-mound breakwater typology under tsunami actions were conducted. This paper is the continuation of our previous paper, Aniel-Quiroga et al. (2018) [1], in which experiments were presented and a stability analysis of the armor units was conducted. This research paper presents the second part of the analysis focused on understanding the pressures that crown-walls of rubble mound breakwaters must support due to tsunami-like actions. These pressures were measured and analyzed, providing the horizontal and uplift pressure time series and laws. The magnitude and timing of the maximum pressure peaks were identified. The maximum horizontal pressure is caused by the first impact of the tsunami. By contrast, the maximum uplift pressure is prompted by a pressure wave generated by the overtopped water falling into the leeside. This pressure wave penetrates the structure from the rear slope. As a result of this analysis, pressures were characterized, allowing the presentation of a new complete methodology that provides, for the tested structure, the design procedure of the crown-wall under tsunami actions. A new formulation to calculate the run-up of solitary waves on the tested rubble-mound breakwater slope is presented here.
机译:瓦砾丘防波堤通常在顶峰处建造有护墙或护墙。这些上层建筑的设计取决于整个使用寿命周期内预期的风暴波荷载历史。在容易发生海啸的地区,此设计必须包括海啸作用,因为其负荷肯定会超过风暴波的负荷。但是,很少考虑海啸负荷。这项研究旨在首次将海啸作用纳入瓦砾堆防波堤的冠墙设计中。在此范围内,在海啸作用下,对典型的地中海瓦砾堆防波堤类型的比例模型进行了实验室实验。本文是我们以前的论文Aniel-Quiroga等的继续。 (2018)[1],其中进行了实验并进行了装甲部队的稳定性分析。本研究论文提出了分析的第二部分,重点是了解瓦砾丘防波堤的冠墙由于类似海啸的作用而必须承受的压力。对这些压力进行了测量和分析,提供了水平和上升压力的时间序列和规律。确定了最大压力峰值的大小和时间。最大水平压力是由海啸的第一次冲击造成的。相比之下,最大的上升压力是由落入背风的过顶水产生的压力波引起的。该压力波从后斜坡穿透结构。分析的结果是确定了压力,从而提出了一种新的完整方法,该方法为受测结构提供了在海啸作用下的冠墙设计程序。这里介绍了一种新的公式,用于计算被测碎石丘防波堤边坡上孤立波的传播。

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