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HF radar signatures of ocean surface geometry and dynamics arising from localized disturbances

机译:海面几何与局部干扰引起的海面几何和动力学的HF雷达签名

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The extraction of remote sensing information from HF radar sea clutter has been practiced for over forty years, but the nature of radar products delivered to users has changed relatively little over the years, especially for skywave radar. One might argue that this is a consequence of four factors: (i) low priority attached to phenomena which occur only sporadically or are restricted to particular locations, (ii) a belief that the coarse spatial resolution of HF skywave radar restricts its application to large-scale, slowly-varying phenomena, (iii) recognition that disturbed propagation conditions at HF frequently obscure even the most readily extracted information, so aiming for more ambitious measurement objectives may be futile, and (iv) lack of suitable geophysical models of localized or transient phenomena with which to inform radar echo interpretation. In this paper we refute the proposition that HF skywave radars are intrinsically incapable of detecting and characterizing such phenomena. We argue that by using geophysical models of spatio-temporal forcing of ocean surface geometry and dynamics by stimuli which are localized in space or time (or both), it is possible to derive corresponding signature models. Adopting mesoscale convective cells as an example, we illustrate the procedure and, within limits, validate the predictions by comparisons with radar measurements.
机译:从HF雷达海杂波的遥感信息的提取已经实施了四十多年,但多年来,雷达产品的性质多年来发生了相对较少的变化,特别是对于天波雷达。人们可能争论这是四个因素的结果:(i)附着在偶尔或仅限于特定位置的现象的低优先级,(ii)HF Skywave雷达的粗空间分辨率限制其应用于大量的粗糙空间分辨率 - 慢慢变化的现象,(iii)识别,即HF的扰动条件令人不安的传播条件频繁地掩盖了最容易提取的信息,因此旨在更加雄心勃勃的测量目标可能是徒劳的,并且(iv)缺乏局部或局部地球物理模型缺乏瞬态现象与其通知雷达回声解释。在本文中,我们反驳了HF Skywave雷达本质上无法检测和表征这种现象的命题。我们认为,通过使用在空间或时间(或两者)的空间或时间(或两者)本地化的刺激,通过使用海面几何形状和动力学的地球物理模型,可以推导相应的签名模型。采用Messcale对流单元作为示例,我们说明了过程,在限制内,通过与雷达测量的比较来验证预测。

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