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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Coupled Model Simulation of Wind Stress Effect on Far Wakes of Ships in SAR Images
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Coupled Model Simulation of Wind Stress Effect on Far Wakes of Ships in SAR Images

机译:SAR图像中风应力对船舶远尾流影响的耦合模型模拟。

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A high-resolution 3-D hydrodynamic model capable of simulating far wakes of ships has been implemented using computational fluid dynamics software. We feed the surface velocity field produced by the hydrodynamic model into a numerical radar imaging model to simulate synthetic aperture radar (SAR) signatures of the wake. Potential capabilities of this modeling method are demonstrated for an example of wind stress effects on the centerline (turbulent) ship wake. The numerical simulations show that an interaction of the wind-induced surface current with circulations in the ship wake results in a convergence zone on the upwind side of the centerline wake and a divergence zone on the downwind side. In the simulated radar image, the convergence zone appears to be bright because of enhanced surface roughness and radar backscattering. The divergence zone looks dark due to an attenuation of short gravity capillary waves and a corresponding reduction of the backscattered power. This combined hydrodynamic and radar imaging model predicts an asymmetry of the centerline wake with respect to the wind direction, which is consistent with observed ship wake signatures in high-resolution satellite SAR images. The approach developed in this work could be also useful for simulations of other natural and artificial fine-scale features on the sea surface (sharp frontal interfaces, freshwater plumes, etc.) and their interpretation in high-resolution SAR imagery.
机译:使用计算流体动力学软件已经实现了能够模拟船舶远流的高分辨率3-D水动力模型。我们将由水动力模型产生的表面速度场输入到数值雷达成像模型中,以模拟尾流的合成孔径雷达(SAR)信号。以风应力对船舶中心线(湍流)的影响为例,演示了此建模方法的潜在功能。数值模拟表明,风向面流与船舶尾流中的环流的相互作用导致在中心线尾流的上风侧会聚一个区域,在下风侧会导致一个发散区域。在模拟的雷达图像中,由于增强的表面粗糙度和雷达反向散射,会聚区显得很亮。由于短重力毛细管波的衰减和反向散射功率的相应减小,发散区看起来很暗。这种结合了流体动力和雷达成像的模型可以预测中心线尾迹相对于风向的不对称性,这与高分辨率卫星SAR图像中观察到的船尾迹特征一致。这项工作中开发的方法还可以用于模拟海面的其他自然和人工精细尺度特征(锋利的正面接口,淡水羽流等)以及在高分辨率SAR图像中进行解释。

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