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Improving Ecological Response Monitoring of Environmental Flows

机译:改善环境流量的生态响应监测

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摘要

Environmental flows are now an important restoration technique in flow-degraded rivers, and with the increasing public scrutiny of their effectiveness and value, the importance of undertaking scientifically robust monitoring is now even more critical. Many existing environmental flow monitoring programs have poorly defined objectives, nonjustified indicator choices, weak experimental designs, poor statistical strength, and often focus on outcomes from a single event. These negative attributes make them difficult to learn from. We provide practical recommendations that aim to improve the performance, scientific robustness, and defensibility of environmental flow monitoring programs. We draw on the literature and knowledge gained from working with stakeholders and managers to design, implement, and monitor a range of environmental flow types. We recommend that (1) environmental flow monitoring programs should be implemented within an adaptive management framework; (2) objectives of environmental flow programs should be well defined, attainable, and based on an agreed conceptual understanding of the system; (3) program and intervention targets should be attainable, measurable, and inform program objectives; (4) intervention monitoring programs should improve our understanding of flow-ecological responses and related conceptual models; (5) indicator selection should be based on conceptual models, objectives, and prioritization approaches; (6) appropriate monitoring designs and statistical tools should be used to measure and determine ecological response; (7) responses should be measured within timeframes that are relevant to the indicator(s); (8) watering events should be treated as replicates of a larger experiment; (9) environmental flow outcomes should be reported using a standard suite of metadata. Incorporating these attributes into future monitoring programs should ensure their outcomes are transferable and measured with high scientific credibility.
机译:现在,环境流量已成为流量退化的河流中一种重要的恢复技术,并且随着公众对其有效性和价值的日益关注,对科学进行可靠监测的重要性现在变得尤为重要。许多现有的环境流量监视程序的目标定义不明确,指标选择不合理,实验设计薄弱,统计强度不佳,并且通常只关注单个事件的结果。这些负面属性使他们难以学习。我们提供实用的建议,旨在提高环境流量监控程序的性能,科学的鲁棒性和防御性。我们利用与利益相关者和管理人员合作设计,实施和监控各种环境流量类型所获得的文献和知识。我们建议(1)应在适应性管理框架内实施环境流量监测计划; (2)环境流量计划的目标应明确定义,可实现并基于对系统的共识概念理解; (3)计划和干预目标应是可实现的,可衡量的,并能告知计划目标; (4)干预监测计划应增进我们对流生态反应和相关概念模型的理解; (5)指标的选择应基于概念模型,目标和优先排序方法; (6)应使用适当的监测设计和统计工具来衡量和确定生态响应; (7)应在与指标相关的时限内衡量响应; (8)浇水事件应视为较大实验的重复; (9)应使用标准的元数据套件报告环境流量结果。将这些属性纳入将来的监视程序应确保其结果可移植并以高度的科学可信度进行度量。

著录项

  • 来源
    《Environmental Management》 |2015年第5期|991-1005|共15页
  • 作者单位

    Research Institute for Environment and Livelihoods, Charles Darwin University, Darwin, NT 0909, Australia,Arthur Rylah Institute for Environmental Research, 123 Brown St., Heidelberg, VIC 3084, Australia;

    The Murray-Darling Freshwater Research Centre, PO Box 991, Wodonga, VIC 3689, Australia,La Trobe University, Wodonga, VIC 3689, Australia;

    Arthur Rylah Institute for Environmental Research, 123 Brown St., Heidelberg, VIC 3084, Australia,Centre of Excellence in Natural Resource Management, University of Western Australia, Albany 6330, Australia;

    Arthur Rylah Institute for Environmental Research, 123 Brown St., Heidelberg, VIC 3084, Australia;

    The Murray-Darling Freshwater Research Centre, PO Box 991, Wodonga, VIC 3689, Australia;

    The Murray-Darling Freshwater Research Centre, PO Box 991, Wodonga, VIC 3689, Australia,La Trobe University, Wodonga, VIC 3689, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Environmental water; River restoration; Conceptual models; Adaptive management;

    机译:环境水;河流修复;概念模型;适应性管理;
  • 入库时间 2022-08-17 13:26:28

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