Numerical Modeling of Failure Mechanisms in Articulated Concrete Block Mattress as a Sustainable Coastal Protection Structure

IF 3.3 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES Sustainability Pub Date : 2021-11-19 DOI:10.3390/su132212794
Ramin Safari Ghaleh, O. Aminoroayaie Yamini, S. Mousavi, M. Kavianpour
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引用次数: 12

Abstract

Shoreline protection remains a global priority. Typically, coastal areas are protected by armoring them with hard, non-native, and non-sustainable materials such as limestone. To increase the execution speed and environmental friendliness and reduce the weight of individual concrete blocks and reinforcements, concrete blocks can be designed and implemented as Articulated Concrete Block Mattress (ACB Mat). These structures act as an integral part and can be used as a revetment on the breakwater body or shoreline protection. Physical models are one of the key tools for estimating and investigating the phenomena in coastal structures. However, it does have limitations and obstacles; consequently, in this study, numerical modeling of waves on these structures has been utilized to simulate wave propagation on the breakwater, via Flow-3D software with VOF. Among the factors affecting the instability of ACB Mat are breaking waves as well as the shaking of the revetment and the displacement of the armor due to the uplift force resulting from the failure. The most important purpose of the present study is to investigate the ability of numerical Flow-3D model to simulate hydrodynamic parameters in coastal revetment. The run-up values of the waves on the concrete block armoring will multiply with increasing break parameter (0.5<ξm−1,0<3.3) due to the existence of plunging waves until it (Ru2%Hm0=1.6) reaches maximum. Hence, by increasing the breaker parameter and changing breaking waves (ξm−1,0>3.3) type to collapsing waves/surging waves, the trend of relative wave run-up changes on concrete block revetment increases gradually. By increasing the breaker index (surf similarity parameter) in the case of plunging waves (0.5<ξm−1,0<3.3), the low values on the relative wave run-down are greatly reduced. Additionally, in the transition region, the change of breaking waves from plunging waves to collapsing/surging (3.3<ξm−1,0<5.0), the relative run-down process occurs with less intensity.
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作为可持续海岸保护结构的铰接式混凝土块床垫破坏机理的数值模拟
海岸线保护仍然是全球优先事项。通常,沿海地区通过用坚硬、非本土和不可持续的材料(如石灰石)进行防护。为了提高执行速度和环境友好性,并减少单个混凝土块和钢筋的重量,混凝土块可以设计和实施为铰接混凝土块床垫(ACB Mat)。这些结构作为一个组成部分,可以用作防波堤主体上的护岸或海岸线保护。物理模型是估计和研究海岸结构现象的关键工具之一。然而,它确实有局限性和障碍;因此,在本研究中,通过Flow-3D软件和VOF,利用波浪在这些结构上的数值模拟来模拟波浪在防波堤上的传播。影响ACB Mat不稳定的因素包括破碎波、护岸的晃动以及由于破坏产生的上升力而导致的护面位移。本研究最重要的目的是研究Flow-3D数值模型模拟海岸护岸水动力参数的能力。波浪在混凝土块护坡上的爬高值将随着破碎参数(0.53.3)类型的增加而成倍增加,形成坍塌波/涌浪,混凝土块护坡的相对波浪爬高变化趋势逐渐增加。通过在冲击波(0.5<ξm−1,0<3.3)的情况下增加破碎指数(海浪相似性参数),可以大大降低相对波浪下降的低值。此外,在过渡区,破碎波从骤降波变为坍塌/浪涌(3.3<ξm−1,0<5.0),相对衰减过程发生的强度较小。
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来源期刊
Sustainability
Sustainability ENVIRONMENTAL SCIENCES-ENVIRONMENTAL SCIENCES
CiteScore
6.80
自引率
20.50%
发文量
14120
审稿时长
17.72 days
期刊介绍: Sustainability (ISSN 2071-1050) is an international and cross-disciplinary scholarly, open access journal of environmental, cultural, economic and social sustainability of human beings, which provides an advanced forum for studies related to sustainability and sustainable development. It publishes reviews, regular research papers, communications and short notes, and there is no restriction on the length of the papers. Our aim is to encourage scientists to publish their experimental and theoretical research relating to natural sciences, social sciences and humanities in as much detail as possible in order to promote scientific predictions and impact assessments of global change and development. Full experimental and methodical details must be provided so that the results can be reproduced.
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