Evaluation of alternative conceptual models for groundwater modelling

This study evaluates the alternative conceptual models for groundwater modelling. A true model was created with a synthetic alluvial fan-plain hydrogeological framework. Various alternative conceptual models were evaluated for groundwater flow simulations. The first alternative model is a single aqu...

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Main Authors: Yangxiao Zhou, H.M.P.S.D. Herath
Format: Article
Language:English
Published: Elsevier 2017-05-01
Series:Geoscience Frontiers
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1674987116300020
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spelling doaj-dad80db922854d25984201e6c66370982020-11-25T01:28:17ZengElsevierGeoscience Frontiers1674-98712017-05-018343744310.1016/j.gsf.2016.02.002Evaluation of alternative conceptual models for groundwater modellingYangxiao ZhouH.M.P.S.D. HerathThis study evaluates the alternative conceptual models for groundwater modelling. A true model was created with a synthetic alluvial fan-plain hydrogeological framework. Various alternative conceptual models were evaluated for groundwater flow simulations. The first alternative model is a single aquifer layer model; the second alternative model is a 3-layer aquifer model; and the third model is a 5-layer model consisting of 3 aquifers separated by 2 aquitards. All models could fit very well to the observations with optimized values of hydraulic conductivities. However, the single aquifer layer model can only compute water balance components with good accuracy. The 3-layer aquifer model can be used for water balance computation and groundwater head simulation with small errors. The 5-layer model is capable of simulating water budget, groundwater head distribution and travel times with high accuracy. Multi-model analysis found only the 3rd alternative model superior.http://www.sciencedirect.com/science/article/pii/S1674987116300020Alternative conceptual modelsMulti-model analysisWater budgetTravel time
collection DOAJ
language English
format Article
sources DOAJ
author Yangxiao Zhou
H.M.P.S.D. Herath
spellingShingle Yangxiao Zhou
H.M.P.S.D. Herath
Evaluation of alternative conceptual models for groundwater modelling
Geoscience Frontiers
Alternative conceptual models
Multi-model analysis
Water budget
Travel time
author_facet Yangxiao Zhou
H.M.P.S.D. Herath
author_sort Yangxiao Zhou
title Evaluation of alternative conceptual models for groundwater modelling
title_short Evaluation of alternative conceptual models for groundwater modelling
title_full Evaluation of alternative conceptual models for groundwater modelling
title_fullStr Evaluation of alternative conceptual models for groundwater modelling
title_full_unstemmed Evaluation of alternative conceptual models for groundwater modelling
title_sort evaluation of alternative conceptual models for groundwater modelling
publisher Elsevier
series Geoscience Frontiers
issn 1674-9871
publishDate 2017-05-01
description This study evaluates the alternative conceptual models for groundwater modelling. A true model was created with a synthetic alluvial fan-plain hydrogeological framework. Various alternative conceptual models were evaluated for groundwater flow simulations. The first alternative model is a single aquifer layer model; the second alternative model is a 3-layer aquifer model; and the third model is a 5-layer model consisting of 3 aquifers separated by 2 aquitards. All models could fit very well to the observations with optimized values of hydraulic conductivities. However, the single aquifer layer model can only compute water balance components with good accuracy. The 3-layer aquifer model can be used for water balance computation and groundwater head simulation with small errors. The 5-layer model is capable of simulating water budget, groundwater head distribution and travel times with high accuracy. Multi-model analysis found only the 3rd alternative model superior.
topic Alternative conceptual models
Multi-model analysis
Water budget
Travel time
url http://www.sciencedirect.com/science/article/pii/S1674987116300020
work_keys_str_mv AT yangxiaozhou evaluationofalternativeconceptualmodelsforgroundwatermodelling
AT hmpsdherath evaluationofalternativeconceptualmodelsforgroundwatermodelling
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