利用可变饱和模型生成的合成数据对非线性头部动力学进行时间序列分析

IF 2 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY
Groundwater Pub Date : 2024-04-06 DOI:10.1111/gwat.13403
Martin A. Vonk, Raoul A. Collenteur, Sorab Panday, Frans Schaars, Mark Bakker
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引用次数: 0

摘要

利用数值模型模拟的合成水头序列,评估了时间序列模型的性能,该模型求解了可变饱和水流的理查兹方程。在两个平行水渠之间的均质无封闭含水层中模拟了水头;在地表指定了测得的日降水量和潜在蒸发量,并模拟了根系的吸水情况。降水事件的水头响应是非线性的,取决于降水事件前后的饱和度和降雨量,而蒸发减少则发生在夏季。生成了 27 年和三种不同土壤类型的合成序列;非饱和区厚度在 0 至 5 米之间。用线性和非线性时间序列模型模拟了合成水头序列。线性时间序列模型有四个参数,采用比例伽马响应,R2 值在 0.67 到 0.96 之间。带有五个参数的非线性时间序列模型利用根区水库模拟补给,然后利用缩放伽马响应函数模拟水头对补给的响应。非线性时间序列模型能够很好地模拟所有合成水头序列,几乎所有模型的 R2 值都在 0.9 以上。非线性模型对单次降水事件的水头响应与可变饱和地下水模型的响应相差无几。所提供的脚本可用于模拟其他气候条件下的合成水头序列或具有额外复杂性的系统,以评估其他数据驱动模型的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Time Series Analysis of Nonlinear Head Dynamics Using Synthetic Data Generated with a Variably Saturated Model

Time Series Analysis of Nonlinear Head Dynamics Using Synthetic Data Generated with a Variably Saturated Model

The performance of time series models is assessed using synthetic head series simulated with a numerical model that solves Richards' equation for variably saturated flow. Heads were simulated in a homogeneous unconfined aquifer between two parallel canals; measured daily precipitation and potential evaporation are specified at the land surface and root water uptake is simulated. The head response to a precipitation event is nonlinear and depends on the saturation degree and rainfall before and after the precipitation event while evaporation reduction occurs during summers. Synthetic series were generated for 27 years and three different soil types; the unsaturated zone thickness varies between 0 and >5 m. The synthetic head series were simulated with a linear and nonlinear time series model. Performance of a linear time series model with four parameters, using a scaled Gamma response, gave R2 values ranging from 0.67 to 0.96. The nonlinear time series model with five parameters simulates recharge using a root zone reservoir after which the head response to recharge is simulated with a scaled Gamma response function. The nonlinear time series model was able to simulate all synthetic head series very well with R2 values above 0.9 for almost all models. The head response of the nonlinear model to a single precipitation event compares well to the response of the variably saturated groundwater model. The provided scripts may be used to simulate synthetic head series for other climates or for systems with additional complexity to assess the performance of other data-driven models.

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来源期刊
Groundwater
Groundwater 环境科学-地球科学综合
CiteScore
4.80
自引率
3.80%
发文量
0
审稿时长
12-24 weeks
期刊介绍: Ground Water is the leading international journal focused exclusively on ground water. Since 1963, Ground Water has published a dynamic mix of papers on topics related to ground water including ground water flow and well hydraulics, hydrogeochemistry and contaminant hydrogeology, application of geophysics, groundwater management and policy, and history of ground water hydrology. This is the journal you can count on to bring you the practical applications in ground water hydrology.
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