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Consistency assessment of rating curve data in various locations using Bidirectional Reach (BReach)

机译:使用双向到达(BReach)在不同位置进行评级曲线数据的一致性评估

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When estimating discharges through rating curves, temporal data consistency is a critical issue. In this research, consistency in stage–discharge data is investigated using a methodology called Bidirectional Reach (BReach), which departs from a (in operational hydrology) commonly used definition of consistency. A period is considered to be consistent if no consecutive and systematic deviations from a current situation occur that exceed observational uncertainty. Therefore, the capability of a rating curve model to describe a subset of the (chronologically sorted) data is assessed in each observation by indicating the outermost data points for which the rating curve model behaves satisfactorily. These points are called the maximum left or right reach, depending on the direction of the investigation. This temporal reach should not be confused with a spatial reach (indicating a part of a river). Changes in these reaches throughout the data series indicate possible changes in data consistency and if not resolved could introduce additional errors and biases. In this research, various measurement stations in the UK, New Zealand and Belgium are selected based on their significant historical ratings information and their specific characteristics related to data consistency. For each country, regional information is maximally used to estimate observational uncertainty. Based on this uncertainty, a BReach analysis is performed and, subsequently, results are validated against available knowledge about the history and behavior of the site. For all investigated cases, the methodology provides results that appear to be consistent with this knowledge of historical changes and thus facilitates a reliable assessment of (in)consistent periods in stage–discharge measurements. This assessment is not only useful for the analysis and determination of discharge time series, but also to enhance applications based on these data (e.g., by informing hydrological and hydraulic model evaluation design about consistent time periods to analyze).
机译:当通过额定曲线估算排放量时,时间数据一致性是一个关键问题。在这项研究中,使用称为“双向到达”(BReach)的方法研究了阶段流量数据的一致性,该方法不同于(在运行水文学中)通常使用的一致性定义。如果与当前状况没有连续和系统的偏差发生超过观察不确定性,则认为该期间是一致的。因此,在每次观察中,通过指示评级曲线模型可以令人满意地表现的最外面的数据点,来评估评级曲线模型描述(按时间顺序排序)数据的子集的能力。根据调查的方向,这些点称为最大左或右范围。此时间范围不应与空间范围(指示河流的一部分)相混淆。整个数据系列中这些覆盖范围的变化表明数据一致性可能发生变化,如果不解决,可能会导致其他错误和偏差。在这项研究中,英国,新西兰和比利时的各种测量站均基于其重要的历史评级信息以及与数据一致性相关的特定特征而被选择。对于每个国家,最大程度地使用区域信息来估计观测不确定性。基于这种不确定性,将执行BReach分析,然后根据有关该站点的历史和行为的可用知识对结果进行验证。对于所有调查的案例,该方法所提供的结果似乎与对历史变化的了解相一致,从而有助于可靠地评估阶段放电测量中(一致)的时期。该评估不仅可用于分析和确定排放时间序列,而且还可基于这些数据来增强应用程序(例如,通过向水文和水力模型评估设计告知要分析的持续时间)。

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