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首页> 外文期刊>Journal of Coastal Research: An International Forum for the Littoral Sciences >Continuous salinity and temperature data from san francisco estuary, 19822002: Trends and the salinity-freshwater inflow relationship
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Continuous salinity and temperature data from san francisco estuary, 19822002: Trends and the salinity-freshwater inflow relationship

机译:1982年来自旧金山河口的连续盐度和温度数据:趋势与盐度-淡水流入关系

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摘要

The U.S. Geological Survey and other federal and state agencies have been collecting continuous temperature and salinity data, two critical estuarine habitat variables, throughout San Francisco estuary for over two decades. Although this dynamic, highly variable system has been well studied, many questions remain relating to the effects of freshwater inflow and other physical and biological linkages. This study examines up to 20 years of publically available, continuous temperature and salinity data from 10 different San Francisco Bay stations to identify trends in temperature and salinity and quantify the salinityfreshwater inflow relationship. Several trends in the salinity and temperature records were identified, although the high degree of daily and interannual variability confounds the analysis. In addition, freshwater inflow to the estuary has a range of effects on salinity from -0.0020 to -0.0096 (m~3 s~(-1)) ~(-1) discharge, depending on location in the estuary and the timescale of analyzed data. Finally, we documented that changes in freshwater inflow to the estuary that are within the range of typical management actions can affect bay-wide salinities by 0.61.4. This study reinforces the idea that multidecadal records are needed to identify trends from decadal changes in water management and climate and, therefore, are extremely valuable.
机译:美国地质调查局及其他联邦和州机构在整个旧金山河口已收集了连续的温度和盐度数据,这是两个重要的河口栖息地变量,已有二十多年的历史了。尽管已经对该动态,高度可变的系统进行了深入研究,但仍存在许多与淡水流入以及其他物理和生物联系有关的问题。这项研究检查了长达20年的公开数据,这些数据来自10个不同的旧金山湾站的连续温度和盐度数据,以确定温度和盐度趋势并量化盐度淡水流入关系。尽管每天和年际的高度变化使分析混乱,但盐度和温度记录中发现了几种趋势。此外,流入河口的淡水对盐度的影响范围从-0.0020到-0.0096(m〜3 s〜(-1))〜(-1),具体取决于河口的位置和分析的时间范围数据。最后,我们记录了入河口的淡水流入量在典型管理措施范围内的变化会影响整个海湾的盐度0.61.4。这项研究强化了这样的想法,即需要数十年的记录来确定水管理和气候的十年变化所产生的趋势,因此这是非常有价值的。

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