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首页> 外文期刊>Frontiers in Marine Science >South Adriatic Recipes: Estimating the Vertical Mixing in the Deep Pit
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South Adriatic Recipes: Estimating the Vertical Mixing in the Deep Pit

机译:南亚得里亚食谱:估算深坑中的垂直混合

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It is shown that the evolution of the vertical temperature structure in the deep South Adriatic Pit (dSAP), below Otranto Strait the sill depth (780m), is well described by a continuous vertical diffusion, a continuous forcing by heat fluxes at the upper boundary (Otranto Strait sill depth) and an intermittent forcing by rare (a few per decade) deep convective and gravity-current events. The analysis is based on two types of data: (i) a 13 years observational data time-series (2006--2019) at 750m, 900m, 1000m and 1200m depth of the temperature from the E2M3A Observatory and (ii) 55 vertical profiles (1985--2019) in the dSAP. The analytical solution of the gravest mode of the heat equation compares well to the temperature profiles and numerical integration of the resulting forced heat-equation compare favourably to the temporal evolution of the time-series data. The vertical mixing coefficient is obtained with three independent methods. The first is based on a best fit of the long term evolution by the numerical diffusion-injection model to the 13-years temperature time-series in the dSAP. The second is obtained by short time (daily) turbulent fluctuations, and a Prandtl mixing length approximation. The third is base on the zero and first mode of an EOF analysis of the time series between (2014--2019). All three methods give a vertical diffusivity of around kappa = 5 10^{-4}m^{2}s^{-1}. Eigenmodes of the homogeneous heat equation subject to the present boundary conditions are sine functions. It is shown that the gravest mode allows for explaining typically 99.5% of the vertical temperature variability (the first three modes typically explain 99.85%) of the vertical temperature profiles at 1m resolution. The longest time scale of the dissipative dynamics in the dSAP is found to be around 5 years. The first mode of the EOF analysis (85%) represents a constant heating over the entire depth and the zero mode is close to the parabolic profile predicted by the heat equation for such forcing. It is shown that the temperature structure is governed by the continuous warming at the sill depth and deep convective and gravity current events play a less important role.
机译:结果表明,通过连续的垂直扩散,深南亚得里亚特坑(DSAP)中的垂直温度结构的演变,低于耳垂海峡深度(780m),通过连续垂直扩散,通过上边界的热通量连续强制迫使(otranto straits speige)和间歇性强迫罕见(每十年)深入对流和重力 - 当前事件。分析基于两种数据:(i)从E2M3A观测台的温度为750米,900米,1000米和1200米的温度下13年的观察数据时间系列(2006-2019),(II)55垂直轮廓(1985--2019)在DSAP中。热敏方程的初级模式的分析解与所得强制热方程的温度谱和数值集成有利地比较时间序列数据的时间演变。用三种独立方法获得垂直混合系数。首先基于数值扩散注射模型在DSAP中的13年温度时间序列中的最佳长期演进。第二次是通过短时间(每日)湍流波动而获得的,并且PRANDTL混合长度近似。第三个是基于EOF分析的零和第一模式(2014-2019)之间的时间序列。所有三种方法都提供围绕 kappa = 5 10 ^ { - 4} m ^ {2} s ^ { - 1}的垂直扩散率。受本发明边界条件的均雄性传热方程的特征模是正弦函数。结果表明,初级模式允许解释通常99.5%的垂直温度变异性(前三种模式通常解释99.85%)的垂直温度分辨率。发现DSAP中的耗散动态的最长时间规模约为5年。 EOF分析(85%)的第一模式表示整个深度上的恒定加热,零模式接近通过用于这种迫使的热方程预测的抛物线轮廓。结果表明,温度结构受到窗台深度的连续变暖的管辖,深入对流和重力电流事件起到不太重要的作用。

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