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Environmental flows and water quality objectives for the River Murray

机译:默里河的环境流量和水质目标

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Over the past decade, there intense consideration of managing flows in the River Murray to provide environmental benefits. In 1990 the Murray-Darling Basin Ministerial Council adopted a water quality policy: To maintain and, where necessary, improve existing water quality in the rivers of the Murray-Darling Basin for all beneficial uses - agricultural, environmental, urban, industrial and recreational, and in 1994 a flow policy: To maintain and where necessary improve existing flow regimes in the waterways of the Murray-Darling Basin to protect and enhance the riverine environment. The Audit of Water Use followed in 1995, culminating in the decision of the Ministerial Council to implement an interim cap on new diversions for consumptive use (the "Cap") in a bid to halt declining river health. In March 1999 the Environmental Flows and Water Quality Objectives for the River Murray Project (the Project) was set-up, primarily to establish water quality and environmental flow objectives for the River Murray system. A Flow Management Plan will be developed that aims to achieve a sustainable river environment and water quality, in accordance with community needs, and including an adaptive approach to management and operation of the River. It will lead to objectives for water quality and environmental flows that are feasible, appropriate, have the support of the scientific, management and stakeholder communities, and carry acceptable levels of risk. This paper describes four key aspects of the process being undertaken to determine the objectives, and design the flow options that will meet those objectives: establishment of an appropriate technical, advisory and administrative framework; establishing clear evidence for regulation impacts; undergoing assessment of environmental flow needs; and filling knowledge gaps. A review of the impacts of flow regulation on the health of the River Murray revealed evidence for decline, but the case for flow regulation as the main cause is circumstantial or uncertain. This is to be expected, because the decline of the River Murray results from many factors acting over a long period. Also, the health of the river varies along its length, from highly degraded to reasonably healthy, so it is clear that different approaches will be needed in the various river zones, with some problems requiring reach or even point scale solutions. Environmental flow needs have been determined through two major Expert Panel reports that identified the ecological priorities for the river. The next step is to translate these needs into feasible flow management actions that will provide the necessary hydrological conditions. Several investigations are underway to recommend options for flow management. Two important investigations are described in this paper: how to enhance flows to wetlands of national and international significance, and how to physically alter or change the operation of structures (including a dam, weir, lock, regulator, barrage or causeway), to provide significant environmental benefits. Early modelling suggests that the only option which has a positive environmental effect in all zones of the River is a reduction in overall water consumption. [References: 8]
机译:在过去的十年中,人们强烈考虑管理默里河的水流以提供环境效益。 1990年,墨累达令盆地部长理事会通过了一项水质​​政策:为维护并在必要时改善墨累达令盆地河流中的水质,以用于农业,环境,城市,工业和娱乐等所有有益用途, 1994年制定了一项流量政策:维持并在必要时改善墨累达令盆地水道中的现有流量状况,以保护和改善河流环境。随后在1995年进行了用水审计,最终部长级理事会决定对消费性用水的新分流实施临时上限(“上限”),以制止河流健康状况的下降。 1999年3月,设立了“默里河项目”(该项目)的环境流量和水质目标,主要是为默里河系统建立水质和环境流量目标。将制定流量管理计划,旨在根据社区需求实现可持续的河流环境和水质,并包括对河流的管理和运营的适应性方法。这将导致可行,适当,得到科学,管理和利益相关者社区支持并承担可接受风险水平的水质和环境流量目标。本文描述了确定目标并设计满足这些目标的流程的过程的四个关键方面:建立适当的技术,咨询和行政框架;为监管影响建立明确的证据;评估环境流量需求;并填补知识空白。流量调节对墨累河健康的影响的回顾揭示了下降的证据,但流量调节作为主要原因的情况在环境上还是不确定的。这是可以预料的,因为穆雷河的下降是长期以来许多因素造成的。此外,河流的健康状况沿河的长度从高度退化到健康程度不等,因此很明显,在各个河流地区都将需要采取不同的方法,有些问题需要解决甚至达到规模尺度。专家小组的两份主要报告确定了河流的生态优先事项,从而确定了环境流量的需求。下一步是将这些需求转化为可行的流量管理措施,以提供必要的水文条件。正在进行一些调查,以建议用于流量管理的选项。本文描述了两个重要的调查:如何增加对国家和国际重要湿地的流量,以及如何物理改变或改变结构(包括水坝,堰,锁,调节器,拦河坝或堤道)的运行,以提供显着的环境效益。早期的模型表明,在河流的所有区域中对环境产生积极影响的唯一选择是减少总耗水量。 [参考:8]

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