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Episodic Master Recession Evaluation of Groundwater and Streamflow Hydrographs for Water-Resource Estimation

机译:地下水和流流文衰退的初步衰退评估水资源估算

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Hydrograph analysis tools using a master recession curve (MRC) can produce many types of hydrologically important watershed-response quantifications, including aquifer recharge and stormflow characterization. An MRC is the relation between the value of a measured response R and its rate of change with time, dR/dt, occurring on the falling limb when there is no infiltration or other water input. We have developed MRC and episodic hydrograph-evaluation methods for multiple purposes, utilizing both water table and streamflow data. The determination of a parameterized MRC through a structured procedure provides a basis for quantification of hydrologic variables and characteristics that can be validly compared among different events, sites, and periods of time. Application of the MRC to needed hydrologic quantifications is done with our revised episodic master recession (EMR) method. Expert-guided iterative procedures are used to quantify parameters needed in applying the MRC and EMR methods to a given site. Hydrologic judgments such as the significance threshold for response magnitude, and the time window within which the precipitation is assumed to be the cause of an observed response, inherently involve some elements of subjectivity. Our structured iterative approach, however, affords much flexibility in formulating expert judgments and serves to confine them to statements and procedures that can be quantified and documented. Parallel application to streamflow and water table hydrographs can produce new hydrologic insights and understanding, not least in the role of unsaturated zone processes in controlling exchanges among components of the water cycle.
机译:使用主经济衰退曲线(MRC)的水文分析工具可以产生许多类型的水文重要的流域 - 响应量化,包括含水层补给和暴风流表征。 MRC是测量响应R值与其随时间的变化率之间的关系,当没有渗透或其他水输入时发生在下降肢体上。我们开发了MRC和ePiSodic水文评估方法,用于多种目的,利用水表和流流数据。通过结构化程序确定参数化MRC为量化的水文变量和特性提供了基础,这些特性可以在不同的事件,站点和时间段内有效地进行比较。使用我们修订的发作硕衰退(EMR)方法进行MRC以需要水文量化。专家引导的迭代程序用于量化将MRC和EMR方法应用于给定站点所需的参数。水文判断,例如响应幅度的显着性阈值以及假定沉淀的时间窗是观察到的响应的原因,固有地涉及一些主体性的元素。然而,我们的结构化迭代方法在制定专家判决方面提供了很大的灵活性,并用于将其限制在可以量化和记录的陈述和程序。并行施用流动流出和水位的水位可以产生新的水文洞察和理解,尤其是不饱和区过程在水循环组分中控制交换中的作用。

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