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首页> 外文期刊>Journal of Physical Oceanography >Spatially Broad Observations of Internal Waves in the Upper Ocean at the Hawaiian Ridge
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Spatially Broad Observations of Internal Waves in the Upper Ocean at the Hawaiian Ridge

机译:夏威夷海岭上层海洋内部波的空间广泛观测

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摘要

The density and current structure at the Hawaiian Ridge was observed using SeaSoar and Doppler sonar during a survey extending from Oahu to Brooks Banks. Across- and along-ridge changes in internal wave statistics in the upper ocean within 200 km of the ridge are investigated. Internal waves with trough-to-crest amplitude as large as 60 m and horizontal wavelength of about 50 km are observed repeatedly in across-ridge sections of potential density. Within 150 km of the ridge, kinetic and potential energy density exceed open-ocean values with maxima about 10 times Garrett-Munk levels. In the Kauai Channel (KC), the kinetic energy density is largest along an M_2 internal tide ray. The ray originates at the northern edge of the ridge peak at a large across-ridge change in topographic slope and terminates at the ocean surface about 30-40 km south of the ridge peak. Kinetic and potential energy density are larger on the south side of the ridge at KC, the side with larger topographic slope. Energy density is also larger on the south side of the ridge at KC in numerical model results and on the side of steeper topographic slope in analytical model results. Along the ridge, the largest observed values of mean-square shear and mean-square slope of isopycnal depth are collocated with the largest energy density in numerical model results. Mean-square shear and mean-square slope increase with decreasing bottom depth and with increasing M_2 barotropic tidal forcing.
机译:在从瓦胡岛到布鲁克斯银行的一次调查中,使用SeaSoar和多普勒声纳观测了夏威夷海脊的密度和当前结构。研究了距海岭200 km以内的上层海洋内部波统计中跨脊和沿脊的变化。在势密度的跨山脊剖面中反复观察到波谷振幅高达60 m,水平波长约为50 km的内部波。在山脊的150公里以内,动能和势能密度超过了洋海值,最大值约为Garrett-Munk水位的10倍。在考艾岛海峡(KC)中,动能密度沿M_2内部潮汐射线最大。射线起源于山脊峰的北缘,在地形坡度上出现较大的跨山脊变化,并终止于山脊峰以南约30-40 km的海面。动力学和势能密度在KC的山脊南侧(地形坡度较大的一侧)较大。在数值模型结果中,KC脊南侧的能量密度也较大,而在解析模型结果中,陡峭的地形坡度侧的能量密度也更大。在数值模型结果中,沿着山脊,最大等方切应力和等深深度的均方斜率观测值与最大能量密度并置。均方切变和均方斜率随着底部深度的减小和M_2正压潮汐力的增加而增加。

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