The concept of wave base: fact and fiction

IF 1.4 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Geo-Marine Letters Pub Date : 2024-08-27 DOI:10.1007/s00367-024-00776-3
B. W. Flemming
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Abstract

This study focusses on the processes that control the morphodynamics of the seabed in the shoaling wave domain, widely known as the shoreface. Shoreface morphodynamics is not only controlled by the local wave climate but also by associated wave- and wind-driven currents, the grain-size, and antecedent geomorphology. This paper provides basic information on sedimentological action of monochromatic waves at the seabed in the shoaling zone to the non-specialist without him-/herself having to solve the complex equations before arriving at workable solutions. It is emphasized that the traditional oceanographically defined wave base (0.5L0) is not relevant in a geological/sedimentological context and should be replaced by a grain-size dependent effective wave base (EWB). Furthermore, open ocean swell-dominated shorefaces have to be distinguished from those of marginal seas dominated by local wind-generated waves. For convenience, a collection of tables and diagrams are provided in the electronic supplementary material (ESM) attached to this paper. They highlight the depths of effective wave bases for a range of grain sizes, wave heights and wave periods between 2 and 16 s.

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波基概念:事实与虚构
这项研究的重点是控制浅滩波浪域(即广为人知的海岸面)海床形态动力学的过程。岸面形态动力学不仅受当地波浪气候的控制,还受相关的波流和风流、颗粒大小和先行地貌的控制。本文为非专业人员提供了有关单色波在滩涂区海底沉积作用的基本信息,使其无需亲自求解复杂方程,即可得出可行的解决方案。需要强调的是,传统海洋学定义的波基(0.5L0)与地质/沉积背景无关,应由粒度相关的有效波基(EWB)取代。此外,必须将开阔海域以涌浪为主的海岸面与边缘海以当地风力产生的波浪为主的海岸面区分开来。为方便起见,本文所附的电子补充材料(ESM)中提供了一系列表格和图表。这些表格和图表突出显示了一系列粒径、波高和波长在 2 到 16 秒之间的有效波基深度。
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来源期刊
Geo-Marine Letters
Geo-Marine Letters 地学-地球科学综合
CiteScore
5.30
自引率
0.00%
发文量
16
审稿时长
>12 weeks
期刊介绍: Geo-Marine Letters is an international peer-reviewed journal focussing on the rapid publication of concise original studies and reviews dealing with processes, products and techniques in marine geology, geophysics, and geochemistry. Coverage spans - structural geology, including plate tectonics of recent active and passive margins - sea-bed morphology, physiography and morphodynamics - sediment transport, depositional processes and sedimentary facies analysis - stratigraphy, basin analysis and paleoenvironmental reconstruction - sea-level history, paleoproductivity, gas hydrates, salt domes and brines - sediment-water interaction and organism-sediment relationships - geochemical tracers, stable isotopes and authigenic mineral formation - geotechnical properties and application of new geo-marine techniques, and more. In addition to regular articles, reviews, discussion/reply articles and technical papers, Geo-Marine Letters welcomes contributions by guest editors in the form of conference/workshop proceedings, or bundles of papers dealing with specific themes.
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