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首页> 外文期刊>Journal of Hydrology >Spatial analysis of aquifer response times for radial flow processes: Nondimensional analysis and laboratory-scale tests
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Spatial analysis of aquifer response times for radial flow processes: Nondimensional analysis and laboratory-scale tests

机译:径向流过程中含水层响应时间的空间分析:无量纲分析和实验室规模的测试

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摘要

A fundamental concept in groundwater hydrology is the notion of steady state, or equilibrium conditions. When a system at some initial steady state condition is perturbed by pumping, a transient cone of depression will develop and the system will approach a new steady state condition. Understanding the time scale required for the transient process to occur is of practical interest since it would help practitioners decide whether to use a steady state model or a more complicated transient model. Standard approaches to estimate the response time use simple scaling relationships which neglect spatial variations. Alternatively, others define the response time to be the amount of time taken for the difference between the transient and steady state solutions to fall below some arbitrary tolerance level. Here, we present a novel approach and use the concept of mean action time to predict aquifer response time scales in a two-dimensional radial geometry for pumping, injection and recovery processes. Our approach leads to relatively simple closed form expressions that explicitly show how the time scale depends on the hydraulic parameters and position. Furthermore, our dimensionless framework allows us to predict the response time scales for a range of applications including small scale laboratory problems and large scale field problems. Our analysis shows that the response time scales vary spatially, but are equivalent for pumping, injection and associated recovery processes. Furthermore, the time scale is independent of the pumping or injection flow rate. We test these predictions in a laboratory scale aquifer and find that our physical measurements corroborate the theoretical predictions. (C) 2015 Elsevier B.V. All rights reserved.
机译:地下水水文学的基本概念是稳态或平衡条件的概念。当某个系统处于某种初始稳态条件下时,由于泵送而受到干扰,就会形成一个瞬态的压降圆锥形,并且系统将接近新的稳态条件。了解瞬态过程发生所需的时间尺度具有实际意义,因为它将帮助从业者决定使用稳态模型还是更复杂的瞬态模型。估计响应时间的标准方法使用忽略空间变化的简单比例关系。或者,其他人将响应时间定义为瞬态和稳态解之间的差异降至某个任意公差水平以下所花费的时间。在这里,我们提出了一种新颖的方法,并使用平均作用时间的概念来预测二维径向几何学中的抽水,注入和恢复过程中的含水层响应时间尺度。我们的方法导致了相对简单的闭合形式表达式,该表达式明确显示了时标如何取决于液压参数和位置。此外,我们的无量纲框架使我们能够预测一系列应用的响应时间尺度,包括小规模实验室问题和大规模现场问题。我们的分析表明,响应时间范围在空间上有所不同,但对于泵送,注入和相关的恢复过程而言却是等效的。此外,时间标度与泵送或注入流速无关。我们在实验室规模的含水层中测试了这些预测,发现我们的物理测量结果证实了理论预测。 (C)2015 Elsevier B.V.保留所有权利。

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