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首页> 外文期刊>Journal of atmospheric and oceanic technology >Numerical Modeling of Bioluminescence Distributions in the Coastal Ocean
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Numerical Modeling of Bioluminescence Distributions in the Coastal Ocean

机译:沿海海洋生物发光分布的数值模拟

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摘要

Bioluminescence (BL) predictability experiments (predictions of the intensity, depth, and distance offshore of the BL maximum) were conducted using an advective-diffusive tracer model with velocities and diffusivities from a fine-resolution model of the Monterey Bay, California, area. For tracer initialization, observations were assimilated into the tracer model while velocities and diffusivities were taken from the hydrodynamic model and kept unchanged during the initialization process. This dynamic initialization procedure provides an equilibrium tracer distribution that is balanced with the velocity and diffusivity fields from the hydrodynamic model. This equilibrium BL distribution was used as the initial BL field for 3 days of prognostic calculations. Two cross-shore surveys of bioluminescence data conducted at two locations (north of the bay and inside the bay) were used in four numerical experiments designed to estimate the limits of bioluminescence predictions by tracers. The cross-shore sections extended to around 25 km offshore, they were around 30 m deep, and on average they were approximately 35 km apart from each other. Bioluminescence predictability experiments demonstrated a strong utility of the tracer model (combined with limited bioluminescence observations and with the output from a circulation model) in predicting (over a 72-h period and over 25-35-km distances) the location and intensity of the BL maximum. Analysis of the model velocity fields and observed and model-predicted bioluminesence fields shows that the BL maximum is located in the frontal area representing a strong reversal of flow direction.
机译:生物发光(BL)可预测性实验(对BL最大值的强度,深度和距离的预测)是使用对流扩散示踪模型进行的,该模型具有来自加利福尼亚州蒙特雷湾地区的精细分辨率模型的速度和扩散率。对于示踪剂初始化,将观测值同化为示踪剂模型,同时从流体动力学模型中获取速度和扩散率,并在初始化过程中保持不变。该动态初始化过程提供了平衡示踪剂分布,该分布与流体力学模型中的速度场和扩散场保持平衡。此平衡BL分布用作3天预后计算的初始BL字段。在四个数值实验中使用了两个在两个位置(海湾的北部和海湾内部)进行的生物发光数据的跨岸调查,目的是通过示踪剂估算生物发光预测的极限。跨岸区域延伸到离岸约25 km,深约30 m,平均彼此相距约35 km。生物发光可预测性实验表明,示踪剂模型(结合有限的生物发光观察结果和循环模型的输出结果)在预测(超过72小时和超过25-35公里的距离)位置和强度方面具有很强的实用性BL最大值。对模型速度场以及观察到的和模型预测的生物发光场的分析表明,BL最大值位于额叶区域,代表着强烈的流动方向逆转。

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