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长屏井中的河流诱发流动力学及其对水相样品的影响。

River-induced flow dynamics in long-screen wells and impact on aqueous samples.

机构信息

Pacific Northwest National Laboratory, P.O. Box 999, MS K6-96, Richland, WA 99352, USA.

出版信息

Ground Water. 2011 Jul-Aug;49(4):515-24. doi: 10.1111/j.1745-6584.2010.00769.x. Epub 2010 Nov 18.

Abstract

Previously published field investigations and modeling studies have demonstrated the potential for sample bias associated with vertical wellbore flow in conventional monitoring wells constructed with long-screened intervals. This article builds on the existing body of literature by (1) demonstrating the utility of continuous (i.e., hourly measurements for ∼1 month) ambient wellbore flow monitoring and (2) presenting results from a field experiment where relatively large wellbore flows (up to 4 L/min) were induced by aquifer hydrodynamics associated with a fluctuating river boundary located approximately 250 m from the test well. The observed vertical wellbore flows were strongly correlated with fluctuations in river stage, alternating between upward and downward flow throughout the monitoring period in response to changes in river stage. Continuous monitoring of ambient wellbore flows using an electromagnetic borehole flowmeter allowed these effects to be evaluated in concert with continuously monitored river-stage elevations (hourly) and aqueous uranium concentrations (daily) in a long-screen well and an adjacent multilevel well cluster. This study demonstrates that when contaminant concentrations within the aquifer vary significantly over the depth interval interrogated, river-induced vertical wellbore flow can result in variations in measured concentration that nearly encompass the full range of variation in aquifer contaminant concentration with depth.

摘要

先前的实地调查和建模研究表明,在使用长筛段建造的常规监测井中,垂直井筒流动可能存在样本偏差。本文通过(1)展示连续(即,约 1 个月的每小时测量)环境井筒流动监测的实用性,以及(2)展示现场实验的结果,进一步研究了这一问题。在该实验中,由于与距试验井约 250 米的波动河边界相关的含水层水力作用,引起了相对较大的井筒流动(高达 4 L/min)。观测到的垂直井筒流动与河水位的波动强烈相关,在监测期间,随着河水位的变化,井筒流动在向上和向下之间交替。使用电磁钻孔流量计对环境井筒流动进行连续监测,使这些效应能够与长筛段监测井和相邻的多级井群中的连续监测河水位(每小时)和水铀浓度(每天)一起进行评估。本研究表明,当含水层内的污染物浓度在探测深度间隔内发生显著变化时,河流引起的垂直井筒流动可能导致测量浓度发生变化,几乎涵盖了含水层污染物浓度随深度的全部变化范围。

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