首页> 外文期刊>Marine Geology >Spectral signatures for swash on reflective, intermediate and dissipative beaches
【24h】

Spectral signatures for swash on reflective, intermediate and dissipative beaches

机译:反射,中间和耗散海滩上的斜波的光谱特征

获取原文
获取原文并翻译 | 示例
       

摘要

In this paper we synthesise a large data set gathered from a wide variety of field deployments and integrate it with previously published results to identify the spectral signatures of swash from contrasting beach types. The field data set includes the full range of micro-tidal beach types (reflective, intermediate and dissipative), with beach gradients ranging from approximately 1:6 to 1:60 exposed to offshore significant wave heights of 0.5-3.0 m. The ratio of swash energy in the short-wave (f > 0.05 Hz) to long-wave (f < 0.05 Hz) frequency bands is found to be significantly different between the three beach types. Swash energy at short-wave frequencies is dominant on reflective and intermediate beaches and swash at long-wave frequencies is dominant on dissipative beaches; consistent with previously reported spectral signatures for the surf zone on these beach types. The available swash spectra were classified using an automated algorithm (CLARA) into five different classes. The ordered classes represent an evolution in the spectrum shape, described by a frequency downshifting of the energy peak from the short-wave into the long-wave frequency band and an increase in the long-wave swash energy level compared to a relatively minor variation in the short-wave swash energy level. A universally common feature of spectra from all beach-states was an f~(-4) energy roll-off in the short-wave frequency band. In contrast to the broadly uniform appearance of the short-wave frequency band, the appearance of the long wave frequency band was highly variable across the beach-states. We incorporate the results presented here and previously published observations into the morphodynamic beach-state model, and propose an ordered sequence of swash spectra under increasing and decreasing incident wave energy level. This extension of the beach-state model to include the swash zone leads to the following propositions for morphodynamic controls on the nature of the swash spectrum. (1) The short-wave part of the swash spectrum is relatively constant in form across all beach-states f~(-4) energy roll-off) and the energy density per unit frequency is controlled by the beach face gradient alone. (2) The spectral bandwidth of the energy roll-off varies directly with offshore wave energy level and inversely with beach face gradient (or beach-state), in a manner consistent with the non-linear wave breaking criterion. (3) The infragravity part of the swash spectrum is highly variable in form across all beach-states and the energy level is related to the offshore wave energy level and surf zone morphology.
机译:在本文中,我们综合了从各种现场部署中收集的大型数据集,并将其与先前发布的结果集成在一起,以从对比海滩类型中识别斜流的光谱特征。现场数据集包括微潮滩类型的全部范围(反射,中间和耗散),滩坡的范围从大约1:6到1:60,暴露在0.5-3.0 m的近海显着波高下。发现在三种海滩类型之间,短波(f> 0.05 Hz)和长波(f <0.05 Hz)频带中的冲刷能量之比显着不同。在反射和中间海滩上,短波频率的斜波能量占主导地位;在耗散海滩上,长波频率的斜波能量占主导地位。与先前报道的这些海滩类型冲浪区的光谱特征一致。使用自动算法(CLARA)将可用的斜波光谱分为五个不同的类别。有序类表示频谱形状的演变,用能量峰从短波到长波频带的频率下移和长波斜波能级的增加(与相对较小的变化相比)来描述短波斜波能级。来自所有海滩状态的光谱的普遍普遍特征是在短波频带中出现f〜(-4)能量滚降。与短波频带的大致均匀的外观相反,长波频带的外观在海滩状态之间变化很大。我们将这里提出的结果和先前发表的观察结果合并到形态动力学海滩状态模型中,并提出了在增加和减少入射波能级的情况下斜波频谱的有序序列。海滩状态模型的这种扩展,包括斜流带,导致对斜流频谱的性质进行形态动力学控制的以下命题。 (1)斜波频谱的短波部分在所有海滩状态f〜(-4)能量滚降形式上相对恒定,并且每单位频率的能量密度仅由海滩面梯度控制。 (2)能量滚降的频谱带宽直接随海上波浪能级而变化,而与海滩面梯度(或海滩状态)成反比,其变化方式与非线性破碎准则一致。 (3)斜波频谱的非重力部分在所有海滩州的形式上高度可变,并且能级与海上波浪能级和冲浪区形态有关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号