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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Radionuclide migration at experimental polygon at Red Forest waste site in Chernobyl zone. Part 2: Hydrogeological characterization and groundwater transport modeling
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Radionuclide migration at experimental polygon at Red Forest waste site in Chernobyl zone. Part 2: Hydrogeological characterization and groundwater transport modeling

机译:切尔诺贝利地区红森林废物现场实验多边形的放射性核素迁移。第2部分:水文地质特征和地下水运移建模

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摘要

This article represents the second of two articles, which review the main results of the international radioecological projects: Chernobyl Pilot Site Project (1999-2003) and Experimental Platform in Chernobyl (2004-2008). These projects studied radionuclide migration from the near-surface radioactive waste trench at the Red Forest waste dump in the Chernobyl zone, which contained nuclear fuel particles. This article presents results from the comprehensive hydrogeological site characterization program including the following issues: geological structure of the study site, hydraulic properties of the deposits, tracer tests in the aquifer, results of groundwater monitoring and unsaturated zone regime studies, as well as data on the ~(90)Sr distribution in the unsaturated zone and aquifer, and analyses of ~(90))Sr sorption behavior. The derived parameters were used to develop and calibrate 1D (flow tube) and 2D (cross-section) models describing the migration of ~(90)Sr from the studied waste trench to the unsaturated zone and aquifer over a 16-a period (1986-2002). The models involved the following sub-models: (1) the geostatistical (structural) model for radioactivity distribution in the trench (using GSLIB); and (2) the radionuclide source term model (STERM1D) describing dissolution of fuel particles and a 1D of radionuclide redistribution in the trench body and unsaturated zone. The MODFLOW - MT3D codes were used to model the 2D ~(90)Sr transport in the aquifer cross-section. Calibration of the 1D model with respect to K _ds and dispersivities allowed quite accurate reproduction of ~(90)Sr migration behavior for the early period (1995-1998). The less perfect fit between the 1D and 2D modeling results and monitoring data for the later period (1999-2002) suggests the need to improve the conceptual radionuclide migration model (i.e. to account for transient hydraulic and geochemical regimes of the waste site).
机译:本文是两篇文章中的第二篇,它们回顾了国际放射生态学项目的主要成果:切尔诺贝利试验站点项目(1999-2003年)和切尔诺贝利实验平台(2004-2008年)。这些项目研究了切尔诺贝利地区红森林废物堆场中近地表放射性废物沟中的放射性核素迁移,该沟含有核燃料颗粒。本文介绍了综合水文地质位点表征程序的结果,包括以下问题:研究位点的地质结构,沉积物的水力特性,含水层中的示踪剂测试,地下水监测和非饱和带状态研究的结果以及有关〜(90)Sr在非饱和区和含水层中的分布,以及〜(90))Sr的吸附行为分析。导出的参数用于建立和校准1D(流量管)和2D(横截面)模型,这些模型描述了〜(90)Sr在16 a的时间段内从研究的废沟向非饱和区和含水层的迁移(1986年) -2002)。这些模型涉及以下子模型:(1)地沟中放射性分布的地统计学(结构)模型(使用GSLIB); (2)放射性核素源术语模型(STERM1D),描述了燃料颗粒的溶解以及沟槽体和不饱和区中放射性核素的1D重新分布。 MODFLOW-MT3D代码用于模拟含水层横截面中的二维〜(90)Sr输运。关于K _ds和分散度的一维模型的校准允许早期(1995-1998)相当精确地再现〜(90)Sr迁移行为。一维和二维建模结果与后期(1999-2002年)监测数据之间的拟合度不太理想,这表明需要改进概念性放射性核素迁移模型(即考虑到废物场的瞬时水力和地球化学状况)。

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