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首页> 外文期刊>Coastal Engineering Journal >The Deformation of Shoaling Internal Waves Observed at the Dongsha Atoll in the Northern South China Sea
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The Deformation of Shoaling Internal Waves Observed at the Dongsha Atoll in the Northern South China Sea

机译:南海北部东沙环礁暗沙内波的形变

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The deformation of nonlinear internal waves (NLIW) from depression to elevation waves during the shoaling process has been attributed to three key factors: wave amplitude, mixed-layer depth and water depth. This study examined the critical conditions for wave deformation by means of five strings of thermistors deployed at the Dongsha Atoll in the northern South China Sea (SCS). During a two-day experiment, four wave trains consisting of 78 solitons at five sites were identified. The parameters related to soliton transformation were formulated by applying the extended Korteweg-de Vries (eKdV) theory. The results indicated that the soliton energy dispersed dramatically along the sharp bottom slope, likely as a result of bottom friction and turbulence mixing. Large-amplitude depression waves were observed to transform into elevation waves before the thickness of the lower layer became equal to that of the upper layer. The ratio of the wave amplitude to the lower-layer thickness was found to be a good indicator of wave deformation. The critical conditions for the transition of the internal waves (IWs) occurred at the ratio approximately equal to 0.66 +/- 0.2. This means that a bottom-trapped elevation wave could form before passing through the theoretical critical point. The solitons felt the bottom and deformed when their amplitudes approached half of the lower-layer thickness. The solitons existed in the form of elevation waves when the waves were in contact with the bottom.
机译:浅滩过程中从凹陷波到高程波的非线性内波(NLIW)的变形归因于三个关键因素:波幅,混合层深度和水深。这项研究通过部署在南海北部(SCS)东沙环礁的五串热敏电阻,研究了波浪变形的临界条件。在为期两天的实验中,确定了五个站点上的四个波列,其中包括78个孤子。通过应用扩展的Korteweg-de Vries(eKdV)理论来制定与孤子变换有关的参数。结果表明,孤子能量沿陡峭的底部坡度急剧分散,这可能是底部摩擦和湍流混合的结果。在下层的厚度等于上层的厚度之前,观察到大振幅的俯冲波转换为仰角波。发现波振幅与下层厚度的比率是波变形的良好指标。内部波(IWs)过渡的临界条件的发生率大约等于0.66 +/- 0.2。这意味着在通过理论临界点之前可能会形成一个底部陷井的仰角波。当孤子的振幅接近下层厚度的一半时,它们会感到底部变形。当波与底部接触时,孤子以高程波的形式存在。

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