首页> 外文会议>Geoscience and Remote Sensing Symposium, 1999. IGARSS '99 Proceedings. IEEE 1999 International >Comparison of forward modeling of apparent hydrooptical properties with in situ observations of multi-spectral data in Saginaw Bay: water quality retrievals and implications for SeaWiFS data processing
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Comparison of forward modeling of apparent hydrooptical properties with in situ observations of multi-spectral data in Saginaw Bay: water quality retrievals and implications for SeaWiFS data processing

机译:萨吉诺湾表观水光学特性的正演模拟与多光谱数据的原位观测的比较:水质反演及其对SeaWiFS数据处理的启示

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Some field measurements of the downwelling solar irradiance above the water surface and the upwelling subsurface solar radiance as well as in situ determinations of phytoplanktonic chlorophyll, total suspended sediments and dissolved organic matter concentrations were performed in Saginaw Bay, Lake Huron, during July and August 1998. The radiometric experiments were carried out at the wavelengths specific for SeaWiFS (412, 443, 490, 510, 555, 665 nm) and accompanied by the observations of weather conditions (wind force and direction, wave height, cloudiness nature and degree) and the Sun elevation. The task of the present study was to solve the forward and inverse problems: to calculate the upwelling radiance using hydrooptical model and the analytical expression for the volume reflectance coefficient, to compare it with in situ data and to retrieve the concentrations of the optically active components (OAC). In the absence of the hydrooptical model for Saginaw Bay forward modeling was conducted using hydrooptical models of other temperate lakes. The retrievals of chlorophyll, suspended minerals (SM) and dissolved organic carbon (DOC) were calculated with the help of the multivariate optimization technique (MOT) and neural network approach.
机译:1998年7月至1998年8月,在休伦湖萨吉诺湾对水面以上的下层太阳辐照度和上层的地下太阳辐照度进行了一些野外测量,并对浮游植物叶绿素,总悬浮沉积物和溶解有机物浓度进行了现场测定。辐射实验是在特定于SeaWiFS的波长(412、443、490、510、555、665 nm)上进行的,同时还观察到了天气状况(风力和方向,波高,云度和程度)以及太阳高程。本研究的任务是解决正向和逆向问题:使用水光学模型计算上升流辐射和体积反射系数的解析表达式,将其与原位数据进行比较,并检索旋光成分的浓度(OAC)。在没有用于萨吉诺湾的水光学模型的情况下,使用其他温带湖泊的水光学模型进行了正向建模。借助多元优化技术(MOT)和神经网络方法,计算了叶绿素,悬浮矿物质(SM)和溶解有机碳(DOC)的取回量。

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