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首页> 外文期刊>Environmental Geology >Revision of archive recovery tests using analytical and numerical methods on thermal water wells in sandstone and fractured carbonate aquifers in the vicinity of Budapest, Hungary
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Revision of archive recovery tests using analytical and numerical methods on thermal water wells in sandstone and fractured carbonate aquifers in the vicinity of Budapest, Hungary

机译:使用分析和数值方法对匈牙利布达佩斯附近的砂岩和压裂碳酸盐含水层中的热水井进行档案恢复测试的修订

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摘要

This study offers a reinterpretation of archive aquifer tests, predominantly on the basis of recovery data, from an original datasheet of thermal water wells located in carbonate and sandstone aquifer units in the vicinity of Budapest, Hungary. The study compares the hydraulic conductivity (K) and specific storage (S-s) values derived in the first instance from an aquifer test evaluation. This included an initial application of the classical analytical Cooper and Jacob method. Subsequently, the visual two-zone (VTZ) numerical method was applied, then third, a more complex model, namely, WT software. It was found that the simple analytical solution is not able to represent the field conditions accurately, while in the course of the application of the VTZ model, it proved possible to alter the various hydraulic parameters within reasonable limits to fit the field data. In the case of the VTZ model, the researcher is required to calculate the accuracy of the fitted model separately, while with the WT model, this is automatic, the software seeks out the best fit. In addition to VTZ parameters, the WT model can efficiently incorporate data on up to 500 model layers, water level, and pressure. The optimization of the parameters may be achieved by automatic calibration, improving the accuracy of the numerical results. Recovery tests for 12 wells were numerically simulated to obtain values for vertical and horizontal hydraulic conductivity and specific storage for Triassic and Eocene fractured carbonate and the Upper-Miocene-Pliocene granular sandstone aquifer units. When an analytical solution is applied, only average values could be obtained. The conclusion reached was that the results of the analytical solution can be improved by the use of numerical methods. These methods are able to incorporate basic information on well design, aquifer material and the hydrogeological environment in the course of the evaluation. The revision of the archive recovery data using numerical methods may assist in the quest for better data for numerical flow and transport simulations without the need to perform new tests. In addition, the methods employed here can explain cases in which the original analytical interpretations proved unable to yield reliable data and predictions.
机译:这项研究主要根据恢复数据,从位于匈牙利布达佩斯附近碳酸盐岩和砂岩含水层单元中的热水井的原始数据表提供了对存档含水层测试的重新解释。该研究比较了首先从含水层测试评估中得出的水力传导率(K)和比存储(S-s)值。这包括经典分析库珀和雅各布方法的最初应用。随后,应用了可视两区(VTZ)数值方法,然后是更复杂的模型,即WT软件。结果发现,简单的分析解决方案不能准确地表示现场条件,而在应用VTZ模型的过程中,已证明可以在合理的范围内更改各种水力参数以适应现场数据。对于VTZ模型,要求研究者单独计算拟合模型的精度,而对于WT模型,这是自动的,软件会寻找最佳拟合。除了VTZ参数外,WT模型还可以有效地合并多达500个模型层,水位和压力的数据。参数的优化可以通过自动校准来实现,从而提高了数值结果的准确性。对12口井的采收率测试进行了数值模拟,以获得三叠纪和始新世断裂碳酸盐岩和上中新世-上新世粒状砂岩含水层单元的垂直和水平导水系数以及具体储量。当应用分析溶液时,只能获得平均值。得出的结论是,可以通过使用数值方法来改善分析解决方案的结果。这些方法能够在评估过程中结合有关井设计,含水层材料和水文地质环境的基本信息。使用数值方法对档案恢复数据进行修订可能有助于寻求更好的数据,以进行数值流和运输模拟,而无需执行新的测试。此外,此处采用的方法可以解释原始分析解释无法产生可靠数据和预测的情况。

著录项

  • 来源
    《Environmental Geology》 |2020年第6期|129.1-129.16|共16页
  • 作者

  • 作者单位

    Eotvos Lorand Univ Dept Geol Fac Sci ELTE Pazmany Peter Setany 1-C H-1117 Budapest Hungary;

    Univ Miskolc Bocskai Ut 13 H-1117 Budapest Hungary;

    UNAM Natl Autonomous Univ Mexico Inst Geog CU Av Univ 3000 Mexico City 04510 DF Mexico;

    Eotvos Lorand Univ Jozsef & Erzsebet Toth Endowed Hydrogeol Chair Dept Geol Pazmany Peter Setany 1-C H-1117 Budapest Hungary;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Recovery test; Thermal water; Carbonate aquifer; Sandstone aquifer; Numerical method;

    机译:恢复测试;热水;碳酸盐含水层;砂岩含水层;数值方法;

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