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Investigation of Wave Growth and Decay in the SWAN Model: Three Regional-Scale Applications

机译:SWAN模型中波的增长和衰减的研究:三种区域规模的应用

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Wave growth and decay characteristics in a typical wave action model [Simulating Waves Nearshore (SWAN)] are investigated in this paper. This study is motivated by generally poor agreement between model results and measurements for a regional-scale model of a two-day period during the SandyDuck '97 experiment, wherein there is consistent underprediction of lowerr-frequency (0.05-0.19 Hz) energy. Two separate methods are presented for improving predictions of low-frequency energy: 1) by altering the weighting of the relative wavenumber term that exists in the whitecapping formulation and 2) by disallowing the breaking of swell. The SandyDuck '97 simulation is repeated with the proposed modifications. Using the first modification, a slight improvement is seen, and with the second modification an apparent problem with nonphysical dissipation of swell by the model is corrected. The modifications are then applied to two other test cases, one in Lake Michigan and the other in the Mississippi Bight. Both cases are of similar scale to the SandyDuck '97 experiment but are freer of uncertainties related to forcing. In both cases, the underprediction of low-frequency energy is observed using the original model, and in both cases agreement with observations is improved via the first of these two proposed modifications. During the course of this investigation, it becomes apparent that, though the model's dissipation term can be improved by these modifications, fundamental problems with the form of the term severely limit the level of improvement that can be achieved.
机译:本文研究了典型波浪作用模型[近海模拟波浪(SWAN)]中的波浪生长和衰减特性。这项研究的动机是,在SandyDuck '97实验期间,为期两天的区域规模模型的模型结果与测量结果之间普遍存在较差的一致,其中始终一致地低估了较低频率(0.05-0.19 Hz)的能量。提出了两种单独的方法来改善低频能量的预测:1)通过更改存在白盖公式中的相对波数项的权重,以及2)不允许突然膨胀。对SandyDuck '97的仿真重复进行了所提出的修改。使用第一个修改,可以看到有一点改进,而使用第二个修改,可以纠正模型对非物理性地消散膨胀的明显问题。然后将修改应用于其他两个测试用例,一个在密歇根湖中,另一个在密西西比湾中。两种情况的规模都与SandyDuck '97实验相似,但与强迫相关的不确定性较少。在这两种情况下,使用原始模型都观察到低频能量的低估,并且在这两种情况下,通过这两个建议的修改中的第一个改进了与观测值的一致性。在研究过程中,很明显,尽管可以通过这些修改来改善模型的耗散项,但项形式的基本问题严重限制了可以达到的改善水平。

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