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Recent Advances in Understanding Flow Dynamics and Transport of Water-Quality Constituents in the Sacramento–San Joaquin River Delta

机译:萨克拉曼多-圣华金河三角洲水流成分的流动动力学和运移认识的最新进展

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doi: https://doi.org/10.15447/sfews.2016v14iss4art1 This paper, part of the collection of research comprising the State of Bay–Delta Science 2016, describes advances during the past decade in understanding flow dynamics and how water-quality constituents move within California’s Sacramento–San Joaquin River Delta (Delta). Water-quality constituents include salinity, heat, oxygen, nutrients, contaminants, organic particles, and inorganic particles. These constituents are affected by water diversions and other human manipulations of flow, and they greatly affect the quantity and quality of benthic, pelagic, and intertidal habitat in the Delta. The Pacific Ocean, the Central Valley watershed, human intervention, the atmosphere, and internal biogeochemical processes are all drivers of flow and transport in the Delta. These drivers provide a conceptual framework for presenting recent findings. The tremendous expansion of acoustic and optical instruments deployed in the Delta over the past decade has greatly improved our understanding of how tidal variability affects flow and transport. Sediment is increasingly viewed as a diminishing resource needed to sustain pelagic habitat and tidal marsh, especially as sea level rises. Connections among the watershed, Delta, and San Francisco Bay that have been quantified recently highlight that a landscape view of this system is needed, rather than consideration of each region in isolation. We discuss interactions of multiple drivers and information gaps.
机译:doi:https://doi.org/10.15447/sfews.2016v14iss4art1该论文是包括《 2016年海湾三角洲国家科学》在内的一系列研究的一部分,描述了过去十年在了解水流动力学以及水质成分如何方面的进展在加利福尼亚的萨克拉曼多–圣华金河三角洲(Delta)内移动。水质成分包括盐度,热量,氧气,养分,污染物,有机颗粒和无机颗粒。这些成分受到引水和其他人为操纵水流的影响,它们极大地影响了三角洲底栖,中上层和潮间带生境的数量和质量。太平洋,中央山谷流域,人为干预,大气和内部生物地球化学过程都是三角洲流动和运输的驱动力。这些驱动因素为介绍最新发现提供了概念框架。过去十年来,三角洲地区部署的声学和光学仪器的巨大扩展极大地增进了我们对潮汐变化如何影响流量和运输的理解。越来越多的人认为,沉积物是维持中上层生境和潮汐沼泽所需要的一种减少的资源,特别是随着海平面的上升。最近已量化的分水岭,三角洲和旧金山湾之间的联系突出表明,需要此系统的景观视图,而不是孤立地考虑每个区域。我们讨论了多种驱动因素和信息鸿沟的相互作用。

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