使用管理流量脉冲作为河口栖息地的食物网络支持

Q3 Agricultural and Biological Sciences San Francisco Estuary and Watershed Science Pub Date : 2021-09-24 DOI:10.15447/sfews.2021v19iss3art3
Jared Frantzich, B. E. Davis, M. MacWilliams, Aaron J. Bever, Ted R. Sommer, Llc Anchor Qea
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引用次数: 2

摘要

虽然淡水流入一直是河口资源管理的主要焦点,包括旧金山河口上游,但人们对使用集中流动行动来最大化特定区域、栖息地和物种的利益越来越感兴趣。作为对这一概念的测试,在2016年夏天,我们使用了一个有管理的流量脉冲来瞄准一个生态重要区域:淡水潮汐沼泽综合体(Cache slough complex - csc)。我们的目标是通过增加通过CSC的净流量来改善河口栖息地,以增强低营养水平资源的下游运输,这是鱼类的重要驱动因素,如濒临灭绝的三角鲑。我们利用区域水利基础设施,将1850万立方米萨克拉门托河的流量引导到邻近的Yolo旁路洪泛区,在那里脉冲继续通过CSC。利用三维水动力模型(UnTRIM)进行的模拟表明,受控制的流动脉冲对通过Yolo旁路以及CSC与下游之间的净水流有很大影响。多个水质成分(比电导率、溶解氧、营养成分[NO₃+ NO₂,NH₄,PO₄])在不同的研究区域存在差异,并且对流量脉冲表现出强烈的响应。此外,水流脉动后,萨克拉门托河下游浮游植物生物量增加,食品质量指标(由长链必需脂肪酸估算)得到改善。经过管理的水流脉冲导致浮游动物(桡足类、枝海洋类)的密度增加,表明从上游洪泛平原通道进入目标CSC和萨克拉门托河区域的潜在平流。这项研究是在一年内进行的,这可能有其独特的特点;然而,我们相信我们的研究是一个有指导意义的例子,说明净流量的相对适度变化如何产生生态相关指标的可测量变化,以及适应性管理行动如何有助于为资源管理提供信息。
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Use of a Managed Flow Pulse as Food Web Support for Estuarine Habitat
While freshwater inflow has been a major focus of resource management in estuaries, including the upper San Francisco Estuary, there is a growing interest in using focused flow actions to maximize benefits for specific regions, habitats, and species. As a test of this concept, in summer 2016, we used a managed flow pulse to target an ecologically important region: a freshwater tidal slough complex (Cache Slough Complex–CSC). Our goal was to improve estuarine habitat by increasing net flows through CSC to enhance downstream transport of lower trophic-level resources, an important driver for fishes such as the endangered Delta Smelt Hypomesus transpacificus. We used regional water infrastructure to direct 18.5 million m³ of Sacramento River flow into its adjacent Yolo Bypass floodplain, where the pulse continued through CSC. Simulations using a 3-D hydrodynamic model (UnTRIM) indicated that the managed flow pulse had a large effect on the net flow of water through Yolo Bypass, and between CSC and further downstream. Multiple water quality constituents (specific conductivity, dissolved oxygen, nutrients [NO₃ + NO₂, NH₄, PO₄]) varied across the study region, and showed a strong response to the flow pulse. In addition, the lower Sacramento River had increased phytoplankton biomass and improved food quality indices (estimated from long-chain essential fatty acids) after the flow pulse. The managed flow pulse resulted in increased densities of zooplankton (copepods, cladocerans) demonstrating potential advection from upper floodplain channels into the target CSC and Sacramento River regions. This study was conducted during a single year, which may have had unique characteristics; however, we believe that our study is an instructive example of how a relatively modest change in net flows can generate measurable changes in ecologically relevant metrics, and how an adaptive management action can help inform resource management.
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来源期刊
San Francisco Estuary and Watershed Science
San Francisco Estuary and Watershed Science Environmental Science-Water Science and Technology
CiteScore
2.90
自引率
0.00%
发文量
24
审稿时长
24 weeks
期刊最新文献
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