SEISMOLOGY AND GEOLOGY ›› 2023, Vol. 45 ›› Issue (3): 652-667.DOI: 10.3969/j.issn.0253-4967.2023.03.004
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LIU Wei1)(), BAI Xi-min2), LÜ Shao-jie1), SHI Zhe-ming1),*(), QI Zhi-yu1), HE Guan-ru1)
Received:
2022-11-07
Revised:
2023-03-15
Online:
2023-06-20
Published:
2023-07-18
刘伟1)(), 白细民2), 吕少杰1), 史浙明1),*(), 齐之钰1), 何冠儒1)
通讯作者:
* 史浙明, 男, 1988年生, 教授, 主要从事地下水方面的研究, E-mail: 作者简介:
刘伟, 男, 1998年生, 现为中国地质大学(北京)地质学专业在读硕士研究生, 主要从事地下水对气压和固体潮的响应研究, E-mail: 1635474420@qq.com。
基金资助:
LIU Wei, BAI Xi-min, LÜ Shao-jie, SHI Zhe-ming, QI Zhi-yu, HE Guan-ru. HYDROLOGICAL PROPERTIES ESTIMATION BY WATER LEVEL IN RESPONSE TO BAROMETRIC PRESSURE[J]. SEISMOLOGY AND GEOLOGY, 2023, 45(3): 652-667.
刘伟, 白细民, 吕少杰, 史浙明, 齐之钰, 何冠儒. 基于井水位气压效应计算含水层的水力参数[J]. 地震地质, 2023, 45(3): 652-667.
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URL: https://www.dzdz.ac.cn/EN/10.3969/j.issn.0253-4967.2023.03.004
Fig. 4 Schematic of the response of an ideal open well-aquifer system to barometric pressure (adapted from Rojstaczer, 1988; Hussein et al., 2013; Odling et al., 2015).
数据长度 | Q/W | ( /2Dcon)/d | ( /Taqu)/d | BE | Tcf |
---|---|---|---|---|---|
30d | 483.1087 | 5.3530 | 0.01108 | 0.32 | 0.75 |
180d | 344.1701 | 3.9793 | 0.01156 | 0.31 | 0.8 |
1a | 189.9513 | 2.5683 | 0.01352 | 0.31 | 0.75 |
1.5a | 339.0560 | 4.6928 | 0.01384 | 0.31 | 0.8 |
Table 1 Fitting parameters of the Gaoda well with different data lengths
数据长度 | Q/W | ( /2Dcon)/d | ( /Taqu)/d | BE | Tcf |
---|---|---|---|---|---|
30d | 483.1087 | 5.3530 | 0.01108 | 0.32 | 0.75 |
180d | 344.1701 | 3.9793 | 0.01156 | 0.31 | 0.8 |
1a | 189.9513 | 2.5683 | 0.01352 | 0.31 | 0.75 |
1.5a | 339.0560 | 4.6928 | 0.01384 | 0.31 | 0.8 |
数据长度 | σcon/s-1 | k/m2 | Taqu/m2·s-1 |
---|---|---|---|
30d | 1.08×10-10 | 11.10×10-15 | 3.05×10-6 |
180d | 1.45×10-10 | 10.64×10-15 | 2.92×10-6 |
1a | 2.25×10-10 | 9.10×10-15 | 2.50×10-6 |
1.5a | 1.23×10-10 | 8.89×10-15 | 2.44×10-6 |
Table 2 Leakage coefficient, permeability and transmissivity of the Gaoda well with different data lengths
数据长度 | σcon/s-1 | k/m2 | Taqu/m2·s-1 |
---|---|---|---|
30d | 1.08×10-10 | 11.10×10-15 | 3.05×10-6 |
180d | 1.45×10-10 | 10.64×10-15 | 2.92×10-6 |
1a | 2.25×10-10 | 9.10×10-15 | 2.50×10-6 |
1.5a | 1.23×10-10 | 8.89×10-15 | 2.44×10-6 |
试验方法 | σcon/s-1 | k/m2 | Taqu/m2·s-1 |
---|---|---|---|
气压 | 1.67×10-10 | 1.00×10-14 | 2.75×10-6 |
固体潮 | 4.00×10-14 | 1.10×10-5 | |
微水试验 | 6.93×10-14 | 1.90×10-5 |
Table 3 Leakage coefficient, permeability, and transmissivity of the Gaoda well calculated by three different methods(data from Ma et al., 2019)
试验方法 | σcon/s-1 | k/m2 | Taqu/m2·s-1 |
---|---|---|---|
气压 | 1.67×10-10 | 1.00×10-14 | 2.75×10-6 |
固体潮 | 4.00×10-14 | 1.10×10-5 | |
微水试验 | 6.93×10-14 | 1.90×10-5 |
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