Estimating Unconfined Aquifer Diffusivity Using 1D Phase Spectral Analysis: A Case Study in the Middle Reach of the Hutuo River, North China Plain

Author:

Zhang Baoyun1ORCID,Wang Junzhi23,Zhang Ruolin4,Li Yasong56,Kong Xiangke56ORCID,Liu Yaci56

Affiliation:

1. Institute of Geophysical and Geochemical Exploration, Chinese Academy of Geological Sciences, Langfang 065000, China

2. Yellow River Engineering Consulting Co., Ltd. (YREC), Zhengzhou 450003, China

3. Key Laboratory of Water Management and Water Security for Yellow River Basin, Ministry of Water Resources (under Construction), Zhengzhou 450003, China

4. China Institute of Geo-Environmental Monitoring, Beijing 100081, China

5. Institute of Hydrogeology and Environmental Geology, Chinese Academy of Geological Sciences, Shijiazhuang 050061, China

6. Key Laboratory of Groundwater Remediation of Hebei Province and China Geological Survey, Shijiazhuang 050061, China

Abstract

Aquifer diffusivity is a basic physical parameter used in hydrogeological calculations and is important for the evaluation and rational utilization of water resources, pollution prevention, and wetland protection. In this study, with the assumptions of aquifer isotropy, i.e., no vertical flow and constant saturated aquifer thickness, by using the Fourier transform and convolution theorem, a 1D analytical solution of the phase spectrum for an unconfined aquifer system was derived, which subsequently led to a phase spectrum solution for aquifer diffusivity. To test the efficacy, the proposed method was applied to a study site in the middle reach of the Hutuo River in the North China Plain. The estimated aquifer diffusivity ranged from 1.9 × 103 to 4.9 × 104 m2/d, with a mean of 2.2 × 104 m2/d, which was consistent with the results obtained using power spectral analysis, pumping tests, and inverse numerical models. The phase spectral approach proposed in this paper can estimate the aquifer properties on a larger scale. If long time series of hydraulic heads are available, it can estimate hydrogeological parameters accurately and quickly. Considering the similarity of the linearized governing equations, it can also be applied to the river–aquifer system and the confined aquifer system.

Funder

Fundamental Research Funds of the Chinese Academy of Geological Sciences

National Natural Science Foundation of China

Key R&D and Promotion Projects of Henan Province: Scientific Research

Independent Research and Development Project of YREC

Publisher

MDPI AG

Subject

Water Science and Technology,Aquatic Science,Geography, Planning and Development,Biochemistry

Reference23 articles.

1. Bear, J. (2007). Hydraulics of Groundwater, Dover Publications.

2. Freeze, R.A., and Cherry, J.A. (1979). Groundwater, Prentice-Hall.

3. Estimation of Aquifer Diffusivity from Analysis of Constant-Head Pumping Test Data;Hiller;Groundwater,1994

4. Aquifer Diffusivity Estimation Through Joint Inversion of the Amplitude Ratios and Time Lags of Dominant Frequencies of Fluctuating Head;Sobolevskaia;Water Resour. Res.,2021

5. Stochastic analysis of phreatic aquifers;Gelhar;Water Resour. Res.,1974

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