利用卫星遥感数据重建班达海内潮孔参数

V. Novotryasov, V. Dubina, L. Mitnik
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引用次数: 0

摘要

本文从班达海卫星图像粗糙度场的表现出发,提出了一种估算由内潮钻孔引起的等平线垂直位移和水平流速的算法。计算算法是在Korteweg-de Vries方程(KdV)的框架内制定的,并增加了考虑圆柱散度的一项。利用班达海平均气候密度剖面计算了KdV方程的二次非线性系数、频散系数和潮汐线性内波速系数。利用卫星图像确定了内潮孔后区的领先孤子速度和波长。利用所提出的方法,估计了斜斜的最大垂直位移/领先孤子的最大振幅和由内部潮汐钻孔引起的表面流的最大速度。通过对卫星图像的分析可知,班达海内部潮孔不仅在非线性和色散的作用下发生变化,而且在柱面散度的作用下发生变化。在内潮孔的节理模型框架中表明,在演化过程中,其前导波和后继波的能量由于柱面散度而衰减。当先导孤子移动的距离等于潮汐周期的两倍时,估计出这种衰减。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reconstructing the Parameters of Internal Tidal Bores in the Banda Sea from Satellite Remote Sensing Data
This article presents an algorithm for estimating the vertical displacements of isopycn and horizontal current velocities caused by internal tidal borings from their manifestations in the roughness field on satellite images of the Banda Sea. The calculation algorithm is formulated within the framework of the Korteweg-de Vries equation (KdV), augmented with a term taking into account the cylindrical divergence. The coefficients of the KdV equation — quadratic nonlinearity, dispersion and tidal linear internal wave velocity — were calculated using the mean — climatic density profile in the Banda Sea. The leading soliton velocity and wavelength in the rear zone of the internal tidal borings were determined from satellite images. Using the proposed methodology, estimates of the maximum vertical displacement of the pycnocline/maximum amplitude of the leading soliton and the maximum velocity of surface currents induced by the internal tidal borings were obtained. It follows from the analysis of satellite images that the internal tidal borings in the Banda Sea are transformed under the action not only of nonlinearity and dispersion, but also of cylindrical divergence. It is shown in the framework of the knoidal model of internal tidal borings that in the process of evolution the energy of its leading and subsequent waves is attenuated due to the cylindrical divergence. This attenuation is estimated when the leading soliton travels a distance equal to twice the tidal period.
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