A rigorous derivation of the Water Mass Transformation framework, the relation between mixing and dia-surface exchange flow, and links to recent theories in estuarine research

IF 2.8 2区 地球科学 Q1 OCEANOGRAPHY
Knut Klingbeil, Erika Henella
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Abstract

Abstract In this paper we present the analytical derivation of a local Water Mass Transformation (WMT) framework for an individual water column. We exactly formulate the mapping of the governing equations from geopotential coordinates to an arbitrary tracer space. Unique definitions for the local effective vertical dia-surface fluxes are given. In tracer space we derive new relations between the local dia-tracer fluxes and the mixing per tracer class. The key relation between the effective vertical dia-tracer velocity and the mixing per tracer class directly formulates how the overturning circulation is linked to local tracer variance dissipation. Horizontal integration of the governing equations in tracer space and the relations between the dia-tracer quantities finally recovers the well-known integral WMT formulations.
水质量转换框架的严格推导,混合与介质-表面交换流之间的关系,以及与河口研究中最新理论的联系
摘要本文给出了单个水柱的局部水团变换(WMT)框架的解析推导。我们精确地表述了控制方程从位势坐标到任意示踪空间的映射。给出了局部有效垂直径面通量的唯一定义。在示踪剂空间中,我们推导了局部示踪剂直径通量与示踪剂类混合之间的新关系。有效垂向示踪剂速度与示踪剂类混合之间的关键关系直接决定了倾覆环流与局部示踪剂方差耗散之间的关系。对示踪空间中的控制方程和直径示踪量之间的关系进行水平积分,最终恢复了众所周知的积分WMT公式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.40
自引率
20.00%
发文量
200
审稿时长
4.5 months
期刊介绍: The Journal of Physical Oceanography (JPO) (ISSN: 0022-3670; eISSN: 1520-0485) publishes research related to the physics of the ocean and to processes operating at its boundaries. Observational, theoretical, and modeling studies are all welcome, especially those that focus on elucidating specific physical processes. Papers that investigate interactions with other components of the Earth system (e.g., ocean–atmosphere, physical–biological, and physical–chemical interactions) as well as studies of other fluid systems (e.g., lakes and laboratory tanks) are also invited, as long as their focus is on understanding the ocean or its role in the Earth system.
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