首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Influence of upwelling, subsurface stratification, and heat fluxes on coastal sea surface temperature off southwestern New Caledonia
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Influence of upwelling, subsurface stratification, and heat fluxes on coastal sea surface temperature off southwestern New Caledonia

机译:上升流,地下分层和热通量对新喀里多尼亚西南沿海海面温度的影响

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摘要

Strong cooling events off the western barrier reef of New Caledonia have been recently observed and attributed to wind-driven coastal upwelling. A simple one-dimensional model based on a heat budget in the mixed laxer is developed and calibrated to explain the daily variations of sea surface temperature (SST) observed at a coastal station off southwestern New Caledonia from 1992 to 2005. This model takes into account the daily wind-forced vertical advection and air-sea heat fluxes, as well as seasonal variations of the subsurface temperature stratification. It can explain a large part of the daily SST variations and helps to quantify the relative contribution of the main vertical processes involved in these variations. The model shows that upwelling is the dominant process at daily timescale, and its SST signature is strongly modulated by the seasonal variations of the subsurface stratification. The surface heat fluxes have a smaller influence than upwelling on daily SST variations. Coastal chlorophyll a concentration increases during upwelling events.
机译:最近已观察到新喀里多尼亚西部堡礁附近发生的强烈降温事件,这归因于风力驱动的沿海上升。开发并校准了一个简单的基于混合Lax中热量预算的一维模型,以解释1992年至2005年在新喀里多尼亚西南海岸附近的沿海站点观测到的海表温度(SST)的每日变化。该模型考虑了每天的风垂直垂直平流和海海热通量,以及地下温度分层的季节性变化。它可以解释每日SST变化的很大一部分,并有助于量化这些变化所涉及的主要垂直过程的相对贡献。该模型表明,上升流是日常时间尺度上的主要过程,其SST信号受到地下分层的季节变化的强烈调节。表面热通量对每日SST变化的影响比上升流的影响小。在上升过程中,沿海叶绿素a浓度增加。

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