俄勒冈州东北部哥伦比亚河玄武岩地下水系统补给的时间和来源。

IF 2 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY
Groundwater Pub Date : 2024-03-30 DOI:10.1111/gwat.13404
Henry M. Johnson, Kate Ely, Anna-Turi Maher
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引用次数: 0

摘要

俄勒冈州东北部哥伦比亚河玄武岩群(CRBG)地下水流系统的补给和水流特征是利用在玄武岩、泉水和溪流基流中完成的水井中采集的同位素、气体和年龄示踪剂样本确定的。大多数地下水样本为晚更新世至早更新世;水井样本的中位年龄为 11,100 年。尽管研究区东部的降水量、地形位置、侵蚀、沉积覆盖层厚度和 CRBG 地质单元存在差异,但平均地下水年龄与成井深度之间的关系相似。然而,地下水年龄的横向连续性在大型区域断层带受到破坏,这表明这些构造严重阻碍了地下水从高降水高地流向相邻的低降水和低海拔研究区域。根据年龄-深度关系计算出的补给率为
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Timing and Source of Recharge to the Columbia River Basalt Groundwater System in Northeastern Oregon

Timing and Source of Recharge to the Columbia River Basalt Groundwater System in Northeastern Oregon

Recharge to and flow within the Columbia River Basalt Group (CRBG) groundwater flow system of northeastern Oregon were characterized using isotopic, gas, and age-tracer samples from wells completed in basalt, springs, and stream base flow. Most groundwater samples were late-Pleistocene to early-Holocene; median age of well samples was 11,100 years. The relation between mean groundwater age and completed well depth across the eastern portion of the study area was similar despite differences in precipitation, topographic position, incision, thickness of the sedimentary overburden, and CRBG geologic unit. However, the lateral continuity in groundwater age was disrupted across large regional fault zones indicating these structures are substantial impediments to groundwater flow from the high-precipitation uplands to adjacent lower-precipitation and lower-elevation portions of the study area. Recharge rates calculated from the age-depth relations were <3 mm/yr and independent of the modern precipitation gradient across the study area. The age-constrained recharge rates to the CRBG groundwater system are considerably smaller than previously published estimates and highlight the uncertainty of prevailing models used to estimate recharge to the CRBG groundwater system across the Columbia Plateau in Oregon and Washington. Age tracer and isotopic evidence indicate recharge to the CRBG groundwater system is an exceedingly slow and localized process.

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来源期刊
Groundwater
Groundwater 环境科学-地球科学综合
CiteScore
4.80
自引率
3.80%
发文量
0
审稿时长
12-24 weeks
期刊介绍: Ground Water is the leading international journal focused exclusively on ground water. Since 1963, Ground Water has published a dynamic mix of papers on topics related to ground water including ground water flow and well hydraulics, hydrogeochemistry and contaminant hydrogeology, application of geophysics, groundwater management and policy, and history of ground water hydrology. This is the journal you can count on to bring you the practical applications in ground water hydrology.
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