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首页> 外文期刊>Environmental Modelling & Software >Remote-sensing reflectance and true colour produced by a coupled hydrodynamic, optical, sediment, biogeochemical model of the Great Barrier Reef, Australia: Comparison with satellite data
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Remote-sensing reflectance and true colour produced by a coupled hydrodynamic, optical, sediment, biogeochemical model of the Great Barrier Reef, Australia: Comparison with satellite data

机译:澳大利亚大堡礁的流体动力学,光学,沉积物生物地球化学耦合模型产生的遥感反射率和真实色彩:与卫星数据的比较

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摘要

Aquatic biogeochemical models are vital tools in understanding and predicting human impacts on water clarity. In this paper, we develop a spectrally-resolved optical model that produces remote-sensing reflectance as a function of depth-resolved biogeochemical model properties such as phytoplankton biomass, suspended sediment concentrations and benthic reflectance. We compare simulated remote sensing reflectance from a 4 km resolution coupled hydrodynamic, optical, sediment and biogeochemical model configured for the Great Barrier Reef with observed remote-sensing reflectance from the MODIS sensor at the 8 ocean colour bands. The optical model is sufficiently accurate to capture the remote-sensing reflectance that would arise from a specific biogeochemical state. Thus the mismatch between simulated and observed remote-sensing reflectance provides an excellent metric for model assessment of the coupled biogeochemical model. Finally, we combine simulated remote-sensing reflectance in a red/green/blue colour model to produce simulated true colour images during the passage of Tropical Cyclone Yasi in February 2011. (C) 2015 Elevier Ltd. All rights reserved.
机译:水生生物地球化学模型是了解和预测人类对水净度的影响的重要工具。在本文中,我们开发了一种光谱分辨光学模型,该模型产生了遥感反射率,作为深度分辨生物地球化学模型特性(例如浮游植物生物量,悬浮沉积物浓度和底栖反射率)的函数。我们比较了为大堡礁配置的4 km分辨率水动力,光学,沉积物和生物地球化学模型的模拟遥感反射率与在8个海洋色带上从MODIS传感器观察到的遥感反射率。光学模型足够精确,可以捕获由于特定生物地球化学状态而产生的遥感反射率。因此,模拟和观察到的遥感反射率之间的不匹配为耦合生物地球化学模型的模型评估提供了极好的度量。最后,我们将模拟的遥感反射率与红色/绿色/蓝色模型相结合,以在2011年2月热带气旋Yasi通过时产生模拟的真实彩色图像。(C)2015 Elevier Ltd.保留所有权利。

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