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Integrative Method for Quantifying Floodplain Habitat

机译:洪泛区生境量化的综合方法

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Restoring functional, self-sustaining floodplain habitats requires explicit consideration of the flow dynamics that once created healthy floodplain ecosystems. This paper describes a new method for quantifying the benefits of river projects by linking the spatial and temporal characteristics of floodplains to define the functional habitat they create. Combining standard hydrologic and hydraulic analysis, habitat can be quantified using area-duration-frequency (ADF) curves for several durations and across multiple frequencies of flood occurrence. From this, a value can be created for expected annual habitat (EAH) analogous to expected annual damages (EAD) used in flood risk analysis. To illustrate this method, a modeling case study was conducted on the Lower San Joaquin River in California. The case study shows that a levee setback to restore floodplain connectivity could benefit splittail fish populations but not rearing salmonids. The development of ADF curves and EAH values is a transparent and replicable means to examine the effects, impacts, and benefits of policy and projects on riverine species and ecosystems.
机译:恢复功能性,自我维持的洪泛区生境需要明确考虑曾经创造健康洪泛区生态系统的流量动态。本文介绍了一种通过将洪泛区的时空特征联系起来以定义河流创造的功能性生境来量化河流项目收益的新方法。结合标准水文和水力分析,可以使用区域持续时间-频率(ADF)曲线在多个持续时间和洪水发生的多个频率上量化栖息地。据此,可以为预期的年度栖息地(EAH)创建一个值,类似于洪水风险分析中使用的预期的年度损失(EAD)。为了说明这种方法,在加利福尼亚的下圣华金河上进行了一个案例研究。案例研究表明,恢复堤防通行能力的堤防倒退可以使裂尾鱼种群受益,但不会养成鲑鱼。 ADF曲线和EAH值的开发是检查政策和项目对河流物种和生态系统的影响,影响和收益的透明且可复制的手段。

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