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An analytical two-flow model to simulate the distribution of irradiance in coastal waters with a wind-roughed surface and bottom reflectance.

机译:一种分析型两流模型,用于模拟具有粗糙表面和底部反射率的沿海水域中的辐照度分布。

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摘要

An analytical two-flow model is derived from the radiative transfer equation to simulate the distribution of irradiance in coastal waters with a wind-roughed surface and bottom reflectance. The model utilizes unique boundary conditions, including the surface slope of the downwelling and upwelling irradiance as well as the influence of wind and bottom reflectance on simulated surface reflectance.; The developed model provides a simple mathematical concept for understanding the irradiant light flux and associated processes in coastal or fresh water as well as turbid estuarine waters. The model is applied to data from the Banana River and coastal Atlantic Ocean water off the east coast of central Florida, USA. The two-flow irradiance model is capable of simulating realistic above-surface reflectance signatures under wind-roughened air-water surface given realistic input parameters including a specular flux conversion coefficient, absorption coefficient, backscattering coefficient, atmospheric visibility, bottom reflectance, and water depth. The root-mean-squared error of the calculated above-surface reflectances is approximately 3% in the Banana River and is less than 15% in coastal Atlantic Ocean off the east of Florida.; Result of the subsurface reflectance sensitivity analysis indicates that the specular conversion coefficient is the most sensitive parameter in the model, followed by the beam attenuation coefficient, absorption coefficient, water depth, backscattering coefficient, specular irradiance, diffuse irradiance, bottom reflectance, and wind speed.; On the other hand, result of the above-surface reflectance sensitivity analysis indicates that the wind speed is the most important parameter, followed by bottom reflectance, attenuation coefficient, water depth, conversion coefficient, specular irradiance, downwelling irradiance, absorption coefficient, and backscattering coefficient. Model results depend on the accuracy of these parameters to a large degree and more important the water depth and value of the bottom reflectance.; The results of this work indicates little change of subsurface or in-water reflectances, due to variations of wind speed and observation angle. Simulations of the wind effect on the total downwelling irradiance from the two-flow model indicates that the total downwelling irradiance just below a wind-roughened water surface increases to about 1% of the total downwelling irradiance on a calm water surface when the sun is near zenith and increases to about 3% when the sun is near the horizon.; This analytically based model, solved or developed utilizing the unique boundary conditions, can be applied to remote sensing of oceanic upper mixed layer dynamics, plant canopies, primary production, and shallow water environments with different bottom type reflectances. Future applications may include determining effects of sediment resuspension of bottom sediments in the bottom boundary layer on remotely sensed data.
机译:从辐射传递方程推导了解析的两流模型,以模拟具有粗糙表面和底部反射率的沿海水域中的辐照度分布。该模型利用了独特的边界条件,包括下降流和上升流辐照度的表面坡度,以及风和底部反射率对模拟表面反射率的影响。所开发的模型提供了一个简单的数学概念,用于了解沿海或淡水以及混浊的河口水域中的辐照光通量及其相关过程。该模型适用于来自美国佛罗里达州中部东海岸的香蕉河和大西洋沿海水域的数据。在给定实际输入参数(包括镜面通量转换系数,吸收系数,反向散射系数,大气能见度,底部反射率和水深)的实际输入参数的情况下,两流辐照度模型能够在风粗糙的空气-水表面下模拟现实的地表反射特征。在香蕉河中,计算出的地表反射率的均方根误差约为3%,在佛罗里达州东部沿海大西洋中小于15%。地下反射率灵敏度分析的结果表明,镜面转换系数是模型中最敏感的参数,其次是光束衰减系数,吸收系数,水深,后向散射系数,镜面辐照度,漫射辐照度,底部反射率和风速。;另一方面,地表反射率敏感性分析的结果表明,风速是最重要的参数,其次是底部反射率,衰减系数,水深,转换系数,镜面辐照度,下降辐照度,吸收系数和背向散射系数。模型结果在很大程度上取决于这些参数的准确性,更重要的是水深和底部反射率的值。这项工作的结果表明,由于风速和观察角的变化,地下或水中的反射率几乎没有变化。根据两流模型对风对总下沉辐照度的影响的模拟表明,当太阳接近时,正好在风粗糙水面以下的总下沉辐照度增加到平静水面上的总下沉辐照度的1%左右。天顶,当太阳接近地平线时增加到大约3%。利用独特的边界条件求解或开发的这种基于分析的模型,可以应用于遥感上层混合层动力学,植物冠层,初级生产和具有不同底部类型反射率的浅水环境。未来的应用可能包括确定底部边界层中底部沉积物的沉积物重悬对遥感数据的影响。

著录项

  • 作者

    Ma, Wei-ming.;

  • 作者单位

    Florida Institute of Technology.;

  • 授予单位 Florida Institute of Technology.;
  • 学科 Biology Oceanography.; Physics Optics.; Physics Radiation.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 299 p.
  • 总页数 299
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 海洋生物;光学;原子核物理学、高能物理学;
  • 关键词

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