扩展XBeach-G的海啸碎石输运数值模拟

IF 4.4 2区 工程技术 Q1 ENGINEERING, OCEAN
Masashi Watanabe , Gerd Masselink , Daisuke Ishimura , Masaki Yamada , Adam D. Switzer
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引用次数: 0

摘要

估计海啸造成的海岸侵蚀对于土地利用规划、评估现有结构(如沿海核电站)的危害以及古海啸重建至关重要。这种估计目前只适用于沙质海滩,使用沙质沉积物运输模型,而不适用于砾石海滩,这是高纬度环境中最常见的海滩类型。本研究扩展了一维跨海岸XBeach-G模型,以考虑海啸造成的二维砾石运输。首先,本研究在实验室实验中证实了扩展XBeach-G模型可以模拟孤立波的时间序列波形。将该模型应用于2011年日本Koyadori Tohoku-oki海啸的砾石运移,发现模拟结果与以往研究中对砾石沉积的观测结果一致。结果表明,海啸对砾石海岸的形态变化具有渗透和渗漏作用。在模拟中,由于地下水的渗漏,海啸对陆地的淹没深度增加,从而增加了砾石海啸沉积物的陆上沉积量。到目前为止,地下水流量计算还没有被纳入海啸模拟,但这对于模拟沙砾海滩的海啸淹没和海啸对沙砾沉积物的运输是重要的。然而,砂砾输运方程中泥沙摩擦系数和乘数的选择对于模拟海啸作用下砂砾沉积物的沉积更为关键,因为这些参数比地下水流量参数更为敏感。虽然所提出的模型已经发展为任何砂砾海滩的海啸模拟,但建议进一步的测试和验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical modelling of gravel transportation by a tsunami with the extended XBeach-G
Estimating coastal erosion by a tsunami is essential for land use planning, assessing hazards for current structures (e.g., coastal nuclear power plants), and for paleotsunami reconstruction. Such estimations are currently available only for sandy beaches, using sand sediment transport models, which are not applicable to gravel beaches, which are the most common beach type in high-latitude settings. This study extended the one-dimensional cross-shore XBeach-G model to account for two-dimensional gravel transport by a tsunami. First, this study confirmed that the extended XBeach-G model can simulate a time series of waveforms of solitary waves during laboratory experiments. The proposed model was then applied to gravel transport by the 2011 Tohoku-oki tsunami at Koyadori, Japan, and found that the simulation results were consistent with observations of gravel deposits in previous studies. It was revealed that infiltration and exfiltration have an impact on morphological change caused by a tsunami on gravel coasts. In the simulation, inundation depth over land by the tsunami increased due to groundwater exfiltration, which increased the onshore deposition volume of gravel tsunami deposits. The groundwater flow calculation has not been incorporated so far for tsunami modelling, but this is important for modelling tsunami inundation at gravel beaches and gravel sediment transport by a tsunami. However, choosing appropriate values for the sediment friction factor and multiplier in the equation for gravel transport is more critical to reproducing the deposition of gravel sediments by a tsunami because these parameters are more sensitive than the parameter of groundwater flow. Although the presented model has been developed for tsunami simulation on any gravel beach, further testing and validation are recommended.
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来源期刊
Applied Ocean Research
Applied Ocean Research 地学-工程:大洋
CiteScore
8.70
自引率
7.00%
发文量
316
审稿时长
59 days
期刊介绍: The aim of Applied Ocean Research is to encourage the submission of papers that advance the state of knowledge in a range of topics relevant to ocean engineering.
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