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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >The influenceof bubble populations generated under windy conditions on the blue-green light transmission in the upper ocean: An exploratory approach
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The influenceof bubble populations generated under windy conditions on the blue-green light transmission in the upper ocean: An exploratory approach

机译:有风条件下产生的气泡种群对上层海洋蓝绿色光传输的影响:一种探索性方法

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摘要

The blue-green window in the ocean plays an important role in functions such as communication between vessels, underwater target identification, and remote sensing. In this study, the transmission process of blue-green light in the upper ocean is analyzed numerically using the Monte Carlo method. First, the effect of total number of photons on the numerical results is evaluated, and the most favorable number is chosen to ensure accuracy without excessive costs for calculation. Then, the physical and mathematical models are constructed. The rough sea surface is generated under windy conditions and the transmission signals are measured in the far field. Therefore, it can be conceptualized as a 1D slab with a rough boundary surface. Under windy conditions, these bubbles form layers that are horizontally homogeneous and decay exponentially with depth under the influence of gravity. The effects of bubble populations on the process of blue-green light transmission at different wind speeds, wavelengths, angle of incidence and chlorophyll-a concentrations are studied for both air-incident and water-incident cases. The results of this study indicate that the transmission process of blue-green light is significantly influenced by bubbles under high wind-speed conditions.
机译:海洋中的蓝绿色窗口在诸如船只之间的通信,水下目标识别和遥感等功能中起着重要作用。在这项研究中,使用蒙特卡洛方法对蓝绿色光在上层海洋中的透射过程进行了数值分析。首先,评估光子总数对数值结果的影响,并选择最合适的数目以确保准确性,而不会增加计算成本。然后,建立物理和数学模型。在有风的条件下会产生粗糙的海面,并在远场中测量传输信号。因此,可以将其概念化为具有粗糙边界表面的一维平板。在大风条件下,这些气泡形成水平均匀的层,并在重力作用下随深度呈指数衰减。研究了空气事件和水事件中不同风速,波长,入射角和叶绿素-a浓度下气泡种群对蓝绿色光传输过程的影响。这项研究的结果表明,在高风速条件下,蓝绿色光的传输过程受到气泡的显着影响。

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