首页> 外文会议>International Conference on Coastal Engineering 2006(ICCE 2006); 20060903-08; San Diego,CA(US) >IMPLEMENTATION AND TEST OF IMPROVED METHODS FOR EVALUATION OF NONLINEAR QUADRUPLET INTERACTIONS IN A THIRD GENERATION WAVE MODEL
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IMPLEMENTATION AND TEST OF IMPROVED METHODS FOR EVALUATION OF NONLINEAR QUADRUPLET INTERACTIONS IN A THIRD GENERATION WAVE MODEL

机译:三次波模型中非线性四重相互作用评估方法的改进和试验

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Nonlinear quadruplets wave-wave interactions play a dominant role in the evolution of ocean and coastal wave spectra. Although the theoretical model equation representing these interactions is available for more than 40 years, most of existing operational and applied wave models rely on a rather crude and very simplified computing scheme to evaluate these interactions, namely the Discrete Interaction Approximation (DIA). Recent research results suggest that improved or quasi-exact techniques can be available to estimate this transfer term quite accurately within a computational time ratio in the order of 20 to 200, compared to DIA (depending on the level of approximation). This leads us to consider the possibility to use such improved computational techniques in wave models applied on real cases (not only academic simplified ID cases as it used to be up to now). To that end the present study address several issues related to the inclusion of improved techniques for computing the quadruplet interactions term in a real wave model environment. Test simulations are performed to examine and quantify the effects of several parameters and choices, such as physics for wind input and white-capping dissipation, wave growth limiter, prognostic limit of the discrete spectrum. Results are presented for homogeneous wind and wave conditions (one single sea point) in deep water under constant wind (duration-limited case) and turning wind conditions (instantaneous shift of wind direction).
机译:非线性四联体波-波相互作用在海洋和沿海波谱的演变中起主要作用。尽管代表这些相互作用的理论模型方程已有40多年的历史,但大多数现有的运行和应用的波浪模型都依赖于一种相当粗糙且非常简化的计算方案来评估这些相互作用,即离散相互作用近似(DIA)。最近的研究结果表明,与DIA(取决于近似水平)相比,可以使用改进的或准精确的技术在20至200数量级的计算时间比率内相当准确地估计此转换项。这使我们考虑了在实际案例(不仅限于学术简化的ID案例,直到现在为止)上应用的波动模型中使用这种改进的计算技术的可能性。为此,本研究解决了一些与在实际波浪模型环境中包含用于计算四重相互作用项的改进技术有关的问题。执行测试模拟以检查和量化几个参数和选择的影响,例如风输入和白峰耗散的物理特性,波增长限制器,离散频谱的预后限制。给出了恒定风速(持续时间有限的情况)和转弯风速条件(风向的瞬时移动)下深水中的均匀风浪条件(单个海点)的结果。

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