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Jupyter Notebook for Pump Test Analysis in Confined Aquifers

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doi.org2022-02-03 更新2025-01-22 收录
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https://doi.org/10.4211/hs.de85625a8db04474bb066809ae93521e
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The Theis equation models the drawdown in an confined aquifer and may be used to analyze the results of pump tests. A classic equation in hydrogeology, this example has been programmed into a Jupyter notebook. This educational resources is targeted at upper-level undergraduate students and is intended to supplement lectures or homework assignments on well hydraulics. The primary learning objectives are to: recognize the Theis equation in its inverse form, use iterative solving methods to match a model to data, and find the values of transmissivity and storativity determined by an aquifer test. Secondary objectives are to: refresh skills associated with scientific and programming and learn to use a Jupyter notebook. Data used in analysis is derived from Problem 4.4.6 in Todd and Mays, 2005. An introductory Jupyter Notebook on the Theis equation is also available; see link in related resources. **Recommend opening in Jupyter Notebook format by using built-in Hydroshare resources. Requires numypy, matplotlib, and math libraries; Python 3 Scientific environment recommended.**

Theis方程式用以模拟受限含水层的水位降深,并可应用于泵测试结果的分析。作为水文地质学中的一道经典方程,此示例已被编入Jupyter笔记本中。该教育资源旨在面向高年级本科生,旨在补充关于井水力学的讲座或作业。主要学习目标包括:识别Theis方程的逆形式、运用迭代求解方法将模型与数据相匹配,以及通过含水层测试找到导水率和给水率的值。次要目标包括:复习与科学和编程相关的技能,并学会使用Jupyter笔记本。分析中使用的数据来源于Todd和Mays(2005年)的第4.4.6题。此外,还提供了一份关于Theis方程的入门级Jupyter笔记本;请参阅相关资源中的链接。**建议使用内置的Hydroshare资源以Jupyter笔记本格式打开。需使用NumPy、Matplotlib和Math库;推荐使用Python 3科学环境。**
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