碎片式压力水平记录的分析:ARTE(事前补给时间有效性)方法

IF 0.8 Q4 WATER RESOURCES
Matteo Nigro, Michele Ambrosio, M. Fagioli, Chiara Curcio, R. Giannecchini
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引用次数: 2

摘要

与气候数据相比,气压计记录在时间和空间连续性上往往是碎片化的,尽管它们在地下水研究中至关重要。本文提出了一种新的方法来分析地下水水位与补给过程的关系,从碎片化的压力测量数据,称为事前补给时间有效性(ARTE)。ARTE方法在位于卢卡平原(意大利托斯卡纳)的三个自动压力表测量的5年(2016-2020年)地下水位数据集上进行了测试。对于每个压力水平时间序列,每30天、60天和120天随机提取一次测量数据,获得的碎片记录少于完整时间序列的3%。对于监测含水层的补给过程,选择降雨和河床入渗。因此,日降雨量和日平均河段时间序列分别由不同的自动雨量计和比重计获得。利用ARTE方法评估了这些补给过程与人工破碎数据集的压力水平变化之间的关系。ARTE方法有可能确定最大相关时间间隔,在这个时间间隔内,补给过程最有可能影响地下水位。在对支离破碎的测压数据集进行分析的基础上,尝试对研究期间的各个测压时间序列进行重构。模拟的日地下水位记录的RMSE值在0.21 ~ 0.73 m之间,NRMSE值在0.08 ~ 0.16之间,与训练数据集越来越大的其他更复杂的模拟程序相比,结果令人满意。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of fragmented piezometric levels records: the ARTE (Antecedent Recharge Temporal Effectiveness) approach
In contrast to climatic data, piezometric records are often fragmented both in time and space continuity, despite their crucial importance in groundwater studies. This work presents a new method for analysis of groundwater level vs. recharge processes relation from fragmented piezometric data, called Antecedent Recharge Temporal Effectiveness (ARTE). The ARTE method was tested on 5 year-long (2016-2020) water table level datasets measured by three automatic piezometers located in the Lucca plain (Tuscany, Italy). For each piezometric level time series, measurements were extracted every 30, 60, and 120 days, and randomly, obtaining fragmented records inlcuding less than 3% of the complete time series. As for recharge processes of the monitored aquifer, rainfall and riverbed infiltration were selected. Hence, daily rainfall and daily mean river stage time series were acquired from different automatic raingauges and hydrometers respectively. The relationship between these recharge processes and the variation of the piezometric level from the artificially fragmented datasets were evaluated with the ARTE method. The ARTE method was potentially able to identify maximum correlation time intervals, for which the recharge processes are most likely to influence the groundwater level. Based on the analysis conducted on the fragmented piezometric datasets, the reconstruction of each piezometric time series was attempted for the study period. The simulated daily groundwater level records have RMSE values between 0.21 m and 0.73 m and NRMSE values between 0.08 and 0.16, which are satisfactory results when compared with other more complex simulation procedures, in which the training datasets are increasingly larger.
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来源期刊
CiteScore
1.80
自引率
50.00%
发文量
36
审稿时长
8 weeks
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