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Salinity and suspended matter variations in the Tay estuary

机译:泰河河口盐度和悬浮物变化

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摘要

The concept of salinity-induced density layering in estuaries was first demonstrated from the upper reaches of the Tay. In this study the nature of the layering and its variation through the tidal cycle is demonstrated from time series of observations taken at many locations within this estuary. Thorough mixing of the waters on the rising tide, as defined by depth profiles of salinity, is commonly replaced by salinity layering during the high water slack period. This condition continues into the falling tide. Frequently the mixed waters are abruptly replaced by stratified waters within the half-hourly sampling interval. This is attributed to the activity of longitudinal fronts, manifest as surficial foam bands, along which water masses shear past each other on both the flood and ebb tides. Offsetting of transverse salinity contours along the fronts is introduced to explain apparent complexities in surface water salinity distributions measured at high water slack. Suspended particulate matter concentrations increase towards the limit of the saline water intrusion before decreasing headwards into the freshwater zone of the estuary. The suspensions in the water column may also be displaced by the lateral offsetting of the waters along the fronts. The recognition of the presence of fronts, and a knowledge of their impact on the estuarine waters may provide an alternative means of understanding the flow characteristics of these challenging water bodies. The techniques of spatial and temporal averaging normally widely used today may not be the most realistic approach to analysis of the flows. (c) 2004 Elsevier Ltd. All rights reserved.
机译:盐度引起的河口密度分层的概念首先从泰河上游得到证实。在这项研究中,分层的性质及其在潮汐周期中的变化是从在该河口许多位置进行的观测时间序列证明的。盐度深度曲线所定义的在涨潮时将水彻底混合,通常在高缺水时期用盐度分层代替。这种情况一直持续到下跌潮。通常,在半小时的采样间隔内,混合水突然被分层水代替。这归因于纵向锋线的活动,表现为表面泡沫带,水团沿着这些锋线在洪水和退潮时相互剪切。引入沿前缘的横向盐度轮廓线的偏移量,以解释在高水松弛下测得的地表水盐度分布的明显复杂性。悬浮颗粒物浓度朝着盐水入侵的极限增加,然后逐渐减少进入河口的淡水区。水柱中的悬浮液还可能因水沿前缘的侧向偏移而移位。对前沿存在的认识,以及对前沿对河口水域影响的认识,可能为了解这些具有挑战性的水体的流动特性提供了另一种方法。今天通常广泛使用的空间和时间平均技术可能不是分析流量的最现实的方法。 (c)2004 Elsevier Ltd.保留所有权利。

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