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在印度尼西亚海域中对明确潮汐进行建模:对海面海水特性而言是一个重要过程。

Modelling explicit tides in the Indonesian seas: An important process for surface sea water properties.

机构信息

Laboratoire d'Etudes en Géophysique et Océanographie Spatiales (LEGOS), Université de Toulouse, CNRS, IRD, CNES, UPS, 14 avenue Edouard-Belin, 31400 Toulouse, France; Agency of Research and Development for Marine and Fisheries, MMAF, Jakarta, Indonesia.

Laboratoire d'Etudes en Géophysique et Océanographie Spatiales (LEGOS), Université de Toulouse, CNRS, IRD, CNES, UPS, 14 avenue Edouard-Belin, 31400 Toulouse, France; Mercator-Ocean, 10 Rue Hermès, 31520 Ramonville-Saint-Agne, France.

出版信息

Mar Pollut Bull. 2018 Jun;131(Pt B):7-18. doi: 10.1016/j.marpolbul.2017.06.033. Epub 2017 Jun 16.

DOI:10.1016/j.marpolbul.2017.06.033
PMID:28625616
Abstract

Very intense internal tides take place in Indonesian seas. They dissipate and affect the vertical distribution of temperature and currents, which in turn influence the survival rates and transports of most planktonic organisms at the base of the whole marine ecosystem. This study uses the INDESO physical model to characterize the internal tides spatio-temporal patterns in the Indonesian Seas. The model reproduced internal tide dissipation in agreement with previous fine structure and microstructure observed in-situ in the sites of generation. The model also produced similar water mass transformation as the previous parameterization of Koch-Larrouy et al. (2007), and show good agreement with observations. The resulting cooling at the surface is 0.3°C, with maxima of 0.8°C at the location of internal tides energy, with stronger cooling in austral winter. The cycle of spring tides and neap tides modulates this impact by 0.1°C to 0.3°C. These results suggest that mixing due to internal tides might also upwell nutrients at the surface at a frequency similar to the tidal frequencies. Implications for biogeochemical modelling are important.

摘要

印度尼西亚海域存在非常强烈的内潮。这些内潮会耗散并影响温度和海流的垂直分布,进而影响整个海洋生态系统基础上大多数浮游生物的存活率和输运。本研究使用 INDESO 物理模型来描述印度尼西亚海域内潮的时空分布模式。该模型再现了内潮耗散情况,与先前在生成地点现场观测到的精细结构和微观结构一致。该模型还产生了与 Koch-Larrouy 等人之前的参数化(2007 年)相似的水团转换,并与观测结果吻合较好。在表面产生的冷却效应为 0.3°C,在内部潮汐能量位置达到最大值 0.8°C,在南半球冬季冷却更强。大潮和小潮的潮汐周期会使这种影响波动 0.1°C 至 0.3°C。这些结果表明,内潮引起的混合作用也可能以类似于潮汐频率的频率将营养物质向上输送到表面。这对内生物地球化学模型的影响非常重要。

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