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Basin-scale impacts of hydropower development on the Mompós Depression wetlands, Colombia

机译:水电开发对哥伦比亚Mompós洼地湿地的流域规模影响

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A number of large hydropower dams are currently under development or in an advanced stage of planning in the Magdalena River basin, Colombia, spelling uncertainty for the Mompós Depression wetlands, one of the largest wetland systems in South America at 3400?kmsup2/sup. Annual large-scale inundation of floodplains and their associated wetlands regulates water, nutrient, and sediment cycles, which in turn sustain a wealth of ecological processes and ecosystem services, including critical food supplies. In this study, we implemented an integrated approach focused on key attributes of ecologically functional floodplains: (1)?hydrologic connectivity between the river and the floodplain, and between upstream and downstream sections; (2)?hydrologic variability patterns and their links to local and regional processes; and (3)?the spatial scale required to sustain floodplain-associated processes and benefits, like migratory fish biodiversity. The implemented framework provides an explicit quantification of the nonlinear or direct response relationship of those considerations with hydropower development. The proposed framework was used to develop a comparative analysis of the potential effects of the hydropower expansion necessary to meet projected 2050?electricity requirements. As part of this study, we developed an enhancement of the Water Evaluation and Planning system?(WEAP) that allows resolution of the floodplains water balance at a medium scale (~?1000?to 10?000?kmsup2/sup) and evaluation of the potential impacts of upstream water management practices. In the case of the Mompós Depression wetlands, our results indicate that the potential additional impacts of new hydropower infrastructure with respect to baseline conditions can range up to one order of magnitude between scenarios that are comparable in terms of energy capacity. Fragmentation of connectivity corridors between lowland floodplains and upstream spawning habitats and reduction of sediment loads show the greatest impacts, with potential reductions of up to 97.6?and 80?%, respectively, from pre-dam conditions. In some development scenarios, the amount of water regulated and withheld by upstream infrastructure is of similar magnitude to existing fluxes involved in the episodic inundation of the floodplain during dry years and, thus, can also induce substantial changes in floodplain seasonal dynamics of average-to-dry years in some areas of the Mompós Depression.
机译:哥伦比亚的马格达莱纳河流域,许多大型水坝目前正在开发中或处于规划的后期阶段,这对南美最大的湿地系统之一Mompós洼地湿地造成了不确定性,其面积为3400?km 2 。泛滥平原及其相关的湿地每年都被大量淹没,调节着水,养分和沉积物的循环,进而维持了丰富的生态过程和生态系统服务,包括重要的粮食供应。在这项研究中,我们针对生态功能洪泛区的关键属性实施了一种综合方法:(1)河流与洪泛区之间以及上游与下游之间的水文连通性; (2)水文变异模式及其与局部和区域过程的联系; (3)维持与洪泛区相关的过程和收益(如迁徙鱼类生物多样性)所需的空间规模。实施的框架提供了对水电开发中这些考虑因素的非线性或直接响应关系的明确量化。拟议的框架用于对满足预计的2050年电力需求所必需的水电扩张的潜在影响进行比较分析。作为这项研究的一部分,我们开发了“水评估和计划系统”(WEAP)的增强功能,该系统可以解决中等规模(〜?1000?至10?000?km 2 ),并评估上游水管理实践的潜在影响。以蒙普斯山洼地为例,我们的结果表明,新的水电基础设施对基准条件的潜在额外影响在能源容量可比的情景之间可能高达一个数量级。低地洪泛区与上游产卵生境之间的连通性走廊的破碎和泥沙量的减少显示出最大的影响,与大坝前的情况相比,分别减少了多达97.6%和80%。在某些开发方案中,上游基础设施调节和保留的水量与干旱年份泛滥泛滥泛滥时所涉及的现有流量相似,因此也可能导致泛滥平原平均水位的季节性变化发生重大变化。莫桑斯大萧条的某些地区干旱。

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