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通过模拟湖水同位素特征估算半咸水采矿湖中的湖水 - 地下水相互作用

Estimation of lake water - groundwater interactions in meromictic mining lakes by modelling isotope signatures of lake water.

作者信息

Seebach Anne, Dietz Severine, Lessmann Dieter, Knoeller Kay

机构信息

Department of Isotope Hydrology (ISOHYD), Helmholtz Centre for Environmental Research - UFZ, Halle/Saale, Germany.

出版信息

Isotopes Environ Health Stud. 2008 Mar;44(1):99-110. doi: 10.1080/10256010801887513.

Abstract

A method is presented to assess lake water-groundwater interactions by modelling isotope signatures of lake water using meteorological parameters and field data. The modelling of delta(18)O and deltaD variations offers information about the groundwater influx into a meromictic Lusatian mining lake. Therefore, a water balance model is combined with an isotope water balance model to estimate analogies between simulated and measured isotope signatures within the lake water body. The model is operated with different evaporation rates to predict delta(18)O and deltaD values in a lake that is only controlled by weather conditions with neither groundwater inflow nor outflow. Comparisons between modelled and measured isotope values show whether the lake is fed by the groundwater or not. Furthermore, our investigations show that an adaptation of the Craig and Gordon model [H. Craig, L.I. Gordon. Deuterium and oxygen-18 variations in the ocean and the marine atmosphere. In Stable Isotopes in Oceanographic Studies and Paleotemperature, Spoleto, E. Tongiorgi (Ed.), pp. 9-130, Consiglio Nazionale delle Ricerche, Laboratorio di Geologia Nucleare, Pisa (1965).] to specific conditions in temperate regions seems necessary.

摘要

本文提出了一种通过利用气象参数和现场数据对湖水同位素特征进行建模来评估湖水与地下水相互作用的方法。对δ(18)O和δD变化的建模提供了有关地下水流入分层的卢萨蒂亚采矿湖的信息。因此,将水平衡模型与同位素水平衡模型相结合,以估计湖水体模拟同位素特征与实测同位素特征之间的相似性。该模型以不同的蒸发率运行,以预测一个仅受天气条件控制、既无地下水流入也无流出的湖泊中的δ(18)O和δD值。模拟同位素值与实测同位素值的比较表明该湖泊是否有地下水补给。此外,我们的研究表明,似乎有必要对克雷格和戈登模型[H.克雷格,L.I.戈登。海洋和海洋大气中的氘和氧-18变化。见《海洋学研究和古温度中的稳定同位素》,斯波莱托,E.通焦尔吉(编),第9-130页,国家研究委员会,核地质实验室,比萨(1965年)。]进行调整以适应温带地区的特定条件。

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