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首页> 外文期刊>Geophysical Research Letters >Radiation of inertial kinetic energy as near-inertial waves forced by tropical Pacific Easterly waves
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Radiation of inertial kinetic energy as near-inertial waves forced by tropical Pacific Easterly waves

机译:热带太平洋东风波推动的惯性动能辐射为近惯性波

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摘要

Easterly waves (EW) are low level tropical atmospheric disturbances able to resonantly force strong mixed layer inertial currents. Using data from two Tropical Atmosphere Ocean/Eastern Pacific Investigation of Climate Processes (TAO/EPIC) buoys located along 95°W and a multiparameterization one-dimensional turbulence model, we examine how the EW-forced surface inertial kinetic energy (IKE) loss is partitioned between turbulent dissipation and near-inertial wave (NIW) radiation. Several EW-forcing events are individually simulated with a version of the General Ocean Turbulence Model modified to include a linear damping coefficient to account for the NIW radiation energy sink. The kinetic energy budget of these simulations shows that NIW radiation accounted for typically 50-60% of the IKE loss and in some cases up to 80%. These empirically derived estimates of the contribution of the radiated NIWs to the loss of wind-induced surface IKE are substantially higher than recently published numerical estimates. Furthermore, the results indicate that the vertical NIW energy flux increases linearly with the wind input of IKE, an easily obtained quantity. The NIW vertical energy flux estimated for a single near-resonant event is comparable to extreme north Pacific wintertime-averaged fluxes, indicating the existence of important episodic sources of near-inertial energy available for mixing within and below the thermocline in the tropical region. Key Points Easterly wave forcing and high stratification produce strong NIW radiation50-60% of the wind inertial kinetic energy input is radiated away as NIWsThe NIW energy flux increases linearly with the wind work
机译:东风波(EW)是低水平的热带大气扰动,能够共振地迫使强混合层惯性流。利用来自沿95°W定位的两个热带大气海洋/东太平洋浮标的调查数据和一个多参数一维湍流模型,我们研究了电子战强迫的表面惯性动能(IKE)损失如何在湍流耗散和近惯性波(NIW)辐射之间划分。使用通用海洋湍流模型的一个版本对几个电子强迫事件进行了单独模拟,该模型经过修改以包括一个线性阻尼系数以解决NIW辐射能量汇。这些模拟的动能预算表明,NIW辐射通常占IKE损耗的50-60%,在某些情况下高达80%。这些根据经验得出的辐射NIW对风致表面IKE损失的贡献的估算值远高于最近发表的数值估算值。此外,结果表明,垂直NIW能量通量随IKE的风输入线性增加,这很容易获得。对单个近共振事件估计的NIW垂直能量通量可与北太平洋冬季的平均极端通量相媲美,这表明存在可用于在热带地区的温跃层内部和下方混合的近惯性能量的重要情景来源。要点东风强迫和高分层会产生强烈的NIW辐射随着NIW辐射出50-60%的风惯性动能输入会被散发NIW能量通量随风力而线性增加

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