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Island wake dynamics and wake influence on the evaporation duct and radar propagation

机译:孤岛尾流动力学及其对蒸发管和雷达传播的影响

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摘要

The conditions under which atmospheric island wakes form leeward of Kauai, Hawaii, are investigated using idealized numerical simulations and real data forecasts from the U.S. Navy's Coupled Ocean-Atmosphere Mesoscale Prediction System (COAMPS). Nondimensional mountain height h is varied in a series of idealized simulations by altering the island's terrain height; with increasing h, the wake configuration varies from two small counterrotating vortices to a straight wake to a meandering wake to a von Karman vortex street. In both the idealized and real data forecasts, stability changes across the wake alter the surface layer temperature and moisture profiles, thereby modifying the refractivity and evaporation duct height (EDH) fields. An electromagnetic (EM) propagation model and a radar clutter model are used to demonstrate that the alterations to the refractivity field created by the wake are capable of strongly affecting near-surface EM propagation. Substantial azimuthal variability in radar sea clutter was observed during radar performance tests conducted by the USS O'Kane leeward of Kauai in December of 1999; these anomalies were postulated to result from an island wake. Results from the linkage of COAMPS output with the two EM codes are compared with the radar returns collected aboard the O 'Kane, and metrics are developed for comparing COAMPS forecast EDH values with those calculated directly from the shipboard observations.
机译:使用理想化的数值模拟和来自美国海军耦合海洋-大气中尺度预测系统(COAMPS)的真实数据预测,研究了在夏威夷考艾岛背风形成大气岛后的情况。在一系列理想化的模拟中,无维山的高度h通过改变岛屿的地形高度而变化;随着h的增加,尾流的形状从两个小的反向旋转涡流到直尾流到蜿蜒的尾流再到von Karman涡流街不等。在理想的和实际的数据预测中,整个尾流的稳定性变化都会改变表面层的温度和湿度分布,从而改变折射率和蒸发导管高度(EDH)场。电磁(EM)传播模型和雷达杂波模型用于证明由尾波产生的对折射率场的改变能够强烈影响近地EM传播。在1999年12月,考艾岛(Kauai)的O'Kane背风号进行的雷达性能测试中,观察到了雷达海杂波中的大方位角变化。推测这些异常是由岛屿唤醒引起的。将COAMPS输出与两个EM代码链接的结果与在O'Kane上收集的雷达回波进行比较,并开发了度量标准,用于将COAMPS预测EDH值与直接从船上观测值计算得出的值进行比较。

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