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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Summertime cooling of the shallow continental shelf
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Summertime cooling of the shallow continental shelf

机译:夏季大陆架的夏季降温

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In summer on the shallow New England continental shelf, near the coast the water temperature is much cooler than the observed surface heat flux suggests. Using depth-integrated heat budgets in 12 and 27 m water depth calculated from observed surface heat flux, water temperature, and velocity, we demonstrate that on time scales of weeks to months the water is persistently cooled due to a mean upwelling circulation. Because the mean wind is weak, that mean circulation is likely not wind driven; it is partly a tidal residual circulation. A feedback exists between the cross-shelf and surface heat fluxes: the two fluxes remain nearly in balance for months, so the water temperature is nearly constant in spite of strong surface heating (the heat budget is two-dimensional). A conceptual model explains the feedback mechanism: the short flushing time of the shallow shelf produces a near steady state heat balance, regardless of the exact form of the circulation, and the feedback is via the influence of surface heating on temperature stratification. Along-shelf heat flux divergence is apparently small compared to the surface and cross-shelf heat flux divergences on time scales of weeks to months. Heat transport due to Stokes drift from surface gravity waves is substantial, warms the shallow shelf in summer, and was previously ignored. In winter, the surface heat flux dominates and the observed water temperature is close to the temperature predicted from surface cooling (the heat budget is one-dimensional); weak winter stratification makes the cross-shelf heat flux small even during strong cross-shelf circulation.
机译:夏季,在靠近海岸的新英格兰大陆架浅层,水温比观测到的表面热通量要低得多。使用根据观察到的表面热通量,水温和流速计算出的12和27 m水深中的深度综合热量收支,我们证明,由于平均上升流环流,在数周至数月的时间范围内,水持续冷却。因为平均风微弱,所以平均循环很可能不是风力驱动的。部分是潮汐残留循环。交叉架和表面热通量之间存在反馈:两个通量在数月内几乎保持平衡,因此,尽管表面加热强烈,水温仍保持恒定(热量预算是二维的)。一个概念模型解释了反馈机制:浅层架子的短冲洗时间产生了接近稳态的热平衡,而与循环的确切形式无关,并且反馈是通过表面加热对温度分层的影响而实现的。与表面和跨架热通量的发散相比,沿周到月的时间尺度,架上热通量的发散明显较小。斯托克斯因地表重力波的漂移而产生的热传递是相当大的,夏季使浅层架子变暖,以前被忽略。在冬季,地表热通量占主导地位,观测到的水温接近根据地表冷却预测的温度(热量预算是一维的)。冬季分层较弱,即使在强大的横架循环过程中,横架的热通量也很小。

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