Scale problems in assessment of hydrogeological parameters of groundwater flow models

An overview is presented of scale problems in groundwater flow, with emphasis on upscaling of hydraulic conductivity, being a brief summary of the conventional upscaling approach with some attention paid to recently emerged approaches. The focus is on essential aspects which may be an advantage in c...

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Main Authors: Nawalany Marek, Sinicyn Grzegorz
Format: Article
Language:English
Published: Sciendo 2015-09-01
Series:Geologos
Subjects:
Online Access:http://www.degruyter.com/view/j/logos.2015.21.issue-3/logos-2015-0012/logos-2015-0012.xml?format=INT
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spelling doaj-517c723294a744569acf68e9e5dc0d6e2020-11-25T00:32:02ZengSciendoGeologos2080-65742015-09-0121317918510.1515/logos-2015-0012logos-2015-0012Scale problems in assessment of hydrogeological parameters of groundwater flow modelsNawalany Marek0Sinicyn Grzegorz1Faculty of Environmental Engineering, Warsaw University of Technology, Nowowiejska 20, 00-653 Warszawa, PolandFaculty of Environmental Engineering, Warsaw University of Technology, Nowowiejska 20, 00-653 Warszawa, PolandAn overview is presented of scale problems in groundwater flow, with emphasis on upscaling of hydraulic conductivity, being a brief summary of the conventional upscaling approach with some attention paid to recently emerged approaches. The focus is on essential aspects which may be an advantage in comparison to the occasionally extremely extensive summaries presented in the literature. In the present paper the concept of scale is introduced as an indispensable part of system analysis applied to hydrogeology. The concept is illustrated with a simple hydrogeological system for which definitions of four major ingredients of scale are presented: (i) spatial extent and geometry of hydrogeological system, (ii) spatial continuity and granularity of both natural and man-made objects within the system, (iii) duration of the system and (iv) continuity/granularity of natural and man-related variables of groundwater flow system. Scales used in hydrogeology are categorised into five classes: micro-scale – scale of pores, meso-scale – scale of laboratory sample, macro-scale – scale of typical blocks in numerical models of groundwater flow, local-scale – scale of an aquifer/aquitard and regional-scale – scale of series of aquifers and aquitards. Variables, parameters and groundwater flow equations for the three lowest scales, i.e., pore-scale, sample-scale and (numerical) block-scale, are discussed in detail, with the aim to justify physically deterministic procedures of upscaling from finer to coarser scales (stochastic issues of upscaling are not discussed here). Since the procedure of transition from sample-scale to block-scale is physically well based, it is a good candidate for upscaling block-scale models to local-scale models and likewise for upscaling local-scale models to regional-scale models. Also the latest results in downscaling from block-scale to sample scale are briefly referred to.http://www.degruyter.com/view/j/logos.2015.21.issue-3/logos-2015-0012/logos-2015-0012.xml?format=INTscale problemupscalinghydraulic conductivityhydrogeological models
collection DOAJ
language English
format Article
sources DOAJ
author Nawalany Marek
Sinicyn Grzegorz
spellingShingle Nawalany Marek
Sinicyn Grzegorz
Scale problems in assessment of hydrogeological parameters of groundwater flow models
Geologos
scale problem
upscaling
hydraulic conductivity
hydrogeological models
author_facet Nawalany Marek
Sinicyn Grzegorz
author_sort Nawalany Marek
title Scale problems in assessment of hydrogeological parameters of groundwater flow models
title_short Scale problems in assessment of hydrogeological parameters of groundwater flow models
title_full Scale problems in assessment of hydrogeological parameters of groundwater flow models
title_fullStr Scale problems in assessment of hydrogeological parameters of groundwater flow models
title_full_unstemmed Scale problems in assessment of hydrogeological parameters of groundwater flow models
title_sort scale problems in assessment of hydrogeological parameters of groundwater flow models
publisher Sciendo
series Geologos
issn 2080-6574
publishDate 2015-09-01
description An overview is presented of scale problems in groundwater flow, with emphasis on upscaling of hydraulic conductivity, being a brief summary of the conventional upscaling approach with some attention paid to recently emerged approaches. The focus is on essential aspects which may be an advantage in comparison to the occasionally extremely extensive summaries presented in the literature. In the present paper the concept of scale is introduced as an indispensable part of system analysis applied to hydrogeology. The concept is illustrated with a simple hydrogeological system for which definitions of four major ingredients of scale are presented: (i) spatial extent and geometry of hydrogeological system, (ii) spatial continuity and granularity of both natural and man-made objects within the system, (iii) duration of the system and (iv) continuity/granularity of natural and man-related variables of groundwater flow system. Scales used in hydrogeology are categorised into five classes: micro-scale – scale of pores, meso-scale – scale of laboratory sample, macro-scale – scale of typical blocks in numerical models of groundwater flow, local-scale – scale of an aquifer/aquitard and regional-scale – scale of series of aquifers and aquitards. Variables, parameters and groundwater flow equations for the three lowest scales, i.e., pore-scale, sample-scale and (numerical) block-scale, are discussed in detail, with the aim to justify physically deterministic procedures of upscaling from finer to coarser scales (stochastic issues of upscaling are not discussed here). Since the procedure of transition from sample-scale to block-scale is physically well based, it is a good candidate for upscaling block-scale models to local-scale models and likewise for upscaling local-scale models to regional-scale models. Also the latest results in downscaling from block-scale to sample scale are briefly referred to.
topic scale problem
upscaling
hydraulic conductivity
hydrogeological models
url http://www.degruyter.com/view/j/logos.2015.21.issue-3/logos-2015-0012/logos-2015-0012.xml?format=INT
work_keys_str_mv AT nawalanymarek scaleproblemsinassessmentofhydrogeologicalparametersofgroundwaterflowmodels
AT sinicyngrzegorz scaleproblemsinassessmentofhydrogeologicalparametersofgroundwaterflowmodels
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