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A framework for modeling connections between hydraulics, water surface roughness, and surface reflectance in open channel flows

机译:用于在开放通道流动中的液压,水面粗糙度和表面反射之间建模连接的框架

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This paper introduces a framework for examining connections between the flow field, the texture of the air-water interface, and the reflectance of the water surface and thus evaluating the potential to infer hydraulic information from remotely sensed observations of surface reflectance. We used a spatial correlation model describing water surface topography to illustrate the application of our framework. Nondimensional relations between model parameters and flow intensity were established based on a prior flume study. Expressing the model in the spatial frequency domain allowed us to use an efficient Fourier transform-based algorithm for simulating water surfaces. Realizations for both flume and field settings had water surface slope distributions positively correlated with velocity and water surface roughness. However, most surface facets were gently sloped and thus unlikely to yield strong specular reflections; the model exaggerated the extent of water surface features, leading to underestimation of facet slopes. A ray tracing algorithm indicated that reflectance was greatest when solar and view zenith angles were equal and the sensor scanned toward the Sun to capture specular reflections of the solar beam. Reflected energy was concentrated in a small portion of the sky, but rougher water surfaces reflected rays into a broader range of directions. Our framework facilitates flight planning to avoid surface-reflected radiance while mapping other river attributes, or to maximize this component to exploit relationships between hydraulics and surface reflectance. This initial analysis also highlighted the need for improved models of water surface topography in natural rivers.
机译:本文介绍了一种用于检查流场之间的连接,空气界面的纹理和水面的反射率的框架,从而评估从远程感测的表面反射率观察液压信息的潜力。我们使用了描述水面地形的空间相关模型来说明我们的框架的应用。基于先前的Flume研究建立了模型参数和流强度之间的非统治关系。在空间域中表达模型允许我们使用基于高效的傅立叶变换的算法来模拟水面。两种水槽和现场设置的实现具有水面斜率分布,与速度和水表面粗糙度呈正相关。然而,大多数表面刻面轻轻倾斜,因此不太可能产生强烈的镜面反射;该模型夸大了水面特征的程度,导致低估了方面的斜坡。光线跟踪算法表明,当太阳能和视图的角度相等时,反射率最大,并且传感器朝向太阳扫描以捕获太阳束的镜面反射。反射能量集中在天空的一小部分中,但粗糙的水面反射到更宽的方向范围内。我们的框架促进了飞行计划,以避免在映射其他河流属性的同时避免表面反映的辐射,或者最大化该组件以利用液压和表面反射之间的关系。该初步分析还强调了在天然河流中改进水面地形的改进模型。

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