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首页> 外文期刊>Hydrobiologia >High-frequency optical measurements in shallow Lake Taihu, China: determining the relationships between hydrodynamic processes and inherent optical properties.
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High-frequency optical measurements in shallow Lake Taihu, China: determining the relationships between hydrodynamic processes and inherent optical properties.

机译:中国太湖浅水区的高频光学测量:确定流体动力学过程与固有光学特性之间的关系。

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摘要

In order to determine the effect of wind-induced waves (influenced by wind velocity and direction) on the dynamics of optical properties in shallow lakes, we determined the short-term variability of the inherent optical properties (IOPs) in Meiliang Bay, Lake Taihu, China, by examining high-frequency data collected between 8 and 21 September 2010 from meteorology and optical sensors. The absorption and beam attenuation coefficients under strong winds were significantly higher than those under weak and moderate winds (t test, P<0.001). Significant correlations were found between absorption, scattering, beam attenuation, and wind speed, showing that the hydrodynamic process was an important factor that influenced the instantaneous IOPs of the water. However, the different wind directions have a different effect degree on the IOPs. Western wind is the most important driven wind direction of this site. In addition, significant correlations were found between bp(440), cp+g(440), bp(677), cp+g(677), bp(440), and turbidity under each wind direction (P<0.001). Exponential and hyperbolic exponent models of the absorption and beam attenuation coefficients were fitted, and linear models between ap+g(677), cp+g(677), and turbidity were developed. Thus, in shallow lakes such as Lake Taihu, using real-time high-frequency monitoring of the turbidity to deduce the water IOPs could be an efficient and practical approach. Our study will be helpful in monitoring the IOPs and in improving the accuracy of bio-optical models to estimate water quality parameters in Lake Taihu.
机译:为了确定风波(受风速和风向影响)对浅湖光学特性动力学的影响,我们确定了太湖梅良湾固有光学特性(IOP)的短期变化。中国,通过检查2010年9月8日至21日之间从气象和光学传感器收集的高频数据。强风下的吸收系数和束衰减系数显着高于弱风和中风下的吸收系数和光束衰减系数(t检验,P <0.001)。在吸收,散射,束衰减和风速之间发现显着的相关性,表明流体动力学过程是影响水的瞬时IOP的重要因素。但是,不同的风向对IOP的影响程度不同。西部风是该站点最重要的驱动风向。另外,在b p (440),c p + g (440),b p (677),c之间发现显着相关性 p + g (677),b p (440)和每个风向下的浊度(P <0.001)。拟合吸收和束衰减系数的指数和双曲线指数模型,以及a p + g (677),c p + g (677)和浑浊发展。因此,在太湖之类的浅湖中,使用浊度的实时高频监测来推断水的IOP可能是一种有效且实用的方法。我们的研究将有助于监测IOP并提高生物光学模型的准确性,以估算太湖的水质参数。

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