Use of atmospheric tides to estimate the hydraulic conductivity of confined and semi-confined aquifers

被引:1
|
作者
Valois, Remi [1 ,2 ]
Derode, Benoit [3 ]
Vouillamoz, Jean-Michel [4 ]
Kotchoni, D. O. Valerie [5 ]
Lawson, M. A. [5 ]
Rau, Gabriel C. [6 ]
机构
[1] French Red Cross, 4 rue Diderot, Paris, France
[2] Univ Avignon, Hydrogeol Lab, UMR EMMAH, 74 Rue Louis Pasteur, Avignon, France
[3] Univ Toulouse, Inst Rech Astrophys & Planetol, CNRS, Toulouse, France
[4] Univ Grenoble Alpes, IRD, CNRS, Grenoble INP,IGE, F-38000 Grenoble, France
[5] Univ Abomey Calavi, Natl Inst water, Abomey Calavi, Benin
[6] Univ Newcastle, Sch Environm & Life Sci, Callaghan, NSW, Australia
关键词
Atmospheric tides; Barometric response function; Groundwater hydraulics; hydraulic testing; Atmospheric pressure; WATER-LEVEL; EARTH TIDES; GROUNDWATER RESPONSE; SLUG TESTS; WELL; TRANSMISSIVITY; CONNECTIVITY; CAMBODIA; REMOVAL; SYSTEMS;
D O I
10.1007/s10040-023-02715-5
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Characterizing groundwater responses to natural drivers is cost effective and offers great potential in hydrogeological inves-tigations. However, there is a lack of method development and evaluation, for example by comparing results with those derived from using conventional methods. This paper presents a modified method to calculate the hydraulic conductivity (K) of confined aquifers using the well water response to atmospheric tides. The approach separates the Earth and atmospheric tide influences on filtered well water-level records in the time domain. The resulting ill-posed regression deconvolution problem can be overcome by constraining the well water response to atmospheric tides in order to follow a physically real-istic semi-diurnal barometric response function (S-2-BRF), or to follow directly a modified hydraulic model (BE-Hvorslev) similar to a slug test evaluation. An analysis with synthetic data shows that K up to 10(-4) m/s can be estimated when pressure records with short sampling intervals are available. Application to a field dataset from Cambodia and Benin, with 20-minute to 60-minute sampling intervals, respectively, results in K values of 5.82 center dot 10(-7) m/s and 2.9<middle dot>10(-7) m/s. This agrees with results independently derived from pumping tests for both confined sediments and semi-confined hard-rock conditions. This method offers a promising and low-cost approach to derive K solely from monitoring datasets in confined aquifers. This is especially advantageous for low-conductivity formations where hydraulic testing takes time.
引用
收藏
页码:2115 / 2128
页数:14
相关论文
共 50 条
  • [21] Particle Filters to Estimate Properties of Confined Aquifers
    Graeme Field
    German Tavrisov
    Christopher Brown
    Alan Harris
    O. Patrick Kreidl
    Water Resources Management, 2016, 30 : 3175 - 3189
  • [22] THE LEVEL OF COPPER, IRON, MANGANESE AND ZINC IN THE LIVER AND PANCREAS OF CONFINED AND SEMI-CONFINED GOATS
    DASVIRGENS, NC
    MACHADO, MA
    NETO, JMF
    MARQUES, AD
    ARQUIVOS DA ESCOLA DE VETERINARIA DA UNIVERSIDADE FEDERAL DE MINAS GERAIS, 1981, 33 (02): : 229 - 233
  • [23] Semi-confined compression of microfabricated polymerized biomaterial constructs
    Moraes, Christopher
    Zhao, Ruogang
    Likhitpanichkul, Morakot
    Simmons, Craig A.
    Sun, Yu
    JOURNAL OF MICROMECHANICS AND MICROENGINEERING, 2011, 21 (05)
  • [24] FREE-CONVECTION IN ANNULAR SEMI-CONFINED GAPS
    MEJANE, A
    BULLETIN D INFORMATIONS SCIENTIFIQUES ET TECHNIQUES DU COMMISSARIAT A L ENERGIE ATOMIQUE, 1974, (197): : 37 - 44
  • [25] Shock wave initiation of detonation in a semi-confined cavity
    Achasov, O.V.
    Labuda, S.A.
    Penyaz'kov, O.G.
    Pushkin, R.M.
    Tarasov, A.I.
    Soviet Journal of Chemical Physics, 1994, 12 (4-5):
  • [26] Metabolic assessment of the use of probiotic or monensin in lambs kept in semi-confined conditions
    Tabeleao, Vinicius Coitinho
    Schwegler, Elizabeth
    de Moura, Sandra Vieira
    Goulart, Maikel Alan
    Weiser, Mariane Aline
    da Silva, Viviane Maciel
    Roos, Talita Bandeira
    Burket Del Pino, Francisco Augusto
    Gil-Turnes, Carlos
    Braunes, Cassio Cassal
    Correa, Marcio Nunes
    SEMINA-CIENCIAS AGRARIAS, 2014, 35 (04): : 1837 - 1845
  • [27] Computational analysis of the hydrogen dispersion in semi-confined spaces
    Patel, Parth
    Baalisampang, Til
    Arzaghi, Ehsan
    Garaniya, Vikram
    Abbassi, Rouzbeh
    Salehi, Fatemeh
    PROCESS SAFETY AND ENVIRONMENTAL PROTECTION, 2023, 176 : 475 - 488
  • [28] Hydrogen combustion experiments in a vertical semi-confined channel
    Friedrich, A.
    Grune, J.
    Sempert, K.
    Kuznetsov, M.
    Jordan, T.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2019, 44 (17) : 9041 - 9049
  • [29] ANALYTICAL FORMULAS FOR THE SHAPE OF THE INTERFACE IN A SEMI-CONFINED AQUIFER
    SIKKEMA, PC
    VANDAM, JC
    JOURNAL OF HYDROLOGY, 1982, 56 (3-4) : 201 - 220
  • [30] BAROMETRIC TIDES IN PARTLY-SATURATED CONFINED AQUIFERS IN BOTSWANA
    DEVRIES, JJ
    GIESKE, A
    JOURNAL OF HYDROLOGY, 1988, 104 (1-4) : 17 - 32