Effect of natural advection on stabilization of contaminant plume in natural traps at underground disposal of liquid wastes
The migration of a contaminant from a zone of injection disposal of hazardous liquid waste in a deep-seated aquifer is considered. Because of its higher density, the polluted groundwater will accumulate under the effect of gravity in aquifer dips (depressions). A 2D-model of variable-density groundw...
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Published in | Water resources Vol. 40; no. 7; pp. 716 - 722 |
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Main Authors | , |
Format | Journal Article |
Language | English |
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Boston
Springer-Verlag
01.12.2013
Springer US Springer Nature B.V |
Subjects | |
Online Access | Get full text |
ISSN | 0097-8078 1608-344X |
DOI | 10.1134/S0097807813070087 |
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Abstract | The migration of a contaminant from a zone of injection disposal of hazardous liquid waste in a deep-seated aquifer is considered. Because of its higher density, the polluted groundwater will accumulate under the effect of gravity in aquifer dips (depressions). A 2D-model of variable-density groundwater flow is used to determine the conditions under which the gravity force will prevent polluted groundwater from leaving depressions driven by regional current. As the result, such depressions can serve as natural traps for polluted waters. The required conditions are based on simple analytical relationships, derived from the analysis of a theoretical model of variable-density groundwater flow in an inclined confined aquifer. The obtained technique is used to estimate the efficiency of such a trap at the site of injection disposal of liquid radioactive waste from Mining and Chemical Combine in Krasnoyarsk region. The analytical estimates of the trap with the use of the proposed technique are shown to be in good agreement with the results of numerical simulation of contaminant migration. |
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AbstractList | The migration of a contaminant from a zone of injection disposal of hazardous liquid waste in a deep-seated aquifer is considered. Because of its higher density, the polluted groundwater will accumulate under the effect of gravity in aquifer dips (depressions). A 2D-model of variable-density groundwater flow is used to determine the conditions under which the gravity force will prevent polluted groundwater from leaving depressions driven by regional current. As the result, such depressions can serve as natural traps for polluted waters. The required conditions are based on simple analytical relationships, derived from the analysis of a theoretical model of variable-density groundwater flow in an inclined confined aquifer. The obtained technique is used to estimate the efficiency of such a trap at the site of injection disposal of liquid radioactive waste from Mining and Chemical Combine in Krasnoyarsk region. The analytical estimates of the trap with the use of the proposed technique are shown to be in good agreement with the results of numerical simulation of contaminant migration. The migration of a contaminant from a zone of injection disposal of hazardous liquid waste in a deep-seated aquifer is considered. Because of its higher density, the polluted groundwater will accumulate under the effect of gravity in aquifer dips (depressions). A 2D-model of variable-density groundwater flow is used to determine the conditions under which the gravity force will prevent polluted groundwater from leaving depressions driven by regional current. As the result, such depressions can serve as natural traps for polluted waters. The required conditions are based on simple analytical relationships, derived from the analysis of a theoretical model of variable-density groundwater flow in an inclined confined aquifer. The obtained technique is used to estimate the efficiency of such a trap at the site of injection disposal of liquid radioactive waste from Mining and Chemical Combine in Krasnoyarsk region. The analytical estimates of the trap with the use of the proposed technique are shown to be in good agreement with the results of numerical simulation of contaminant migration.[PUBLICATION ABSTRACT] |
Author | Malkovsky, V. I Pek, A. A |
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References | AppsJATsangC-FDeep Injection Disposal of Hazardous and Industrial Waste1996San DiegoAcad. Press GebkhartBDzhaluriyaIMakhadzhanRSammakiyaBSvobodnokonvektivnyetecheniya, teploimassoobmen1991MoscowMir(Free Convection Flows, Heat and Mass Exchange) MironenkoVADinamika podzemnykh vod1996MoscowMosk.Gosud. Gorn. Univ.(Ground-water Dynamics) MalkovskyVIPekAAVelichkinVIParkerFLPrediction of contaminant plume movement from the deep-well injection of liquid radioactive waste (LRW) at the Krasnoyarsk disposal siteHydrolog. Sci. and Technology J.199915s.1–4145171 VladimirovVSUravneniyamatematicheskoifiziki1971MoscowNauka(Equations of Mathematical Physics) Rybal’chenkoAIPimenovMKKostinPPGlubinnoe zakhoronenie zhidkikh radioaktivnykh otkhodov1994MoscowIzdAT(Deep Disposal of Liquid Radioactive Wastes) Mal’kovskiiVIVelichkinVIGorlinskiiYuEVladimirovaEIA Model of Radionuclide Transfer by Groundwater on the Territory of the Russian Research Centre Kurchatov InstituteGeol. Rudn. Mestorozhd.2009514275289 ComptonKLNovikovVParkerFLDeep well injection of liquid radioactive waste at Krasnoyarsk-26, V.I2000LaxenburgInst. Appl. Syst. Anal. B Gebkhart (6405_CR2) 1991 VI Mal’kovskii (6405_CR3) 2009; 51 VI Malkovsky (6405_CR8) 1999; 15 KL Compton (6405_CR6) 2000 (6405_CR7) 1996 VS Vladimirov (6405_CR1) 1971 VA Mironenko (6405_CR4) 1996 AI Rybal’chenko (6405_CR5) 1994 |
References_xml | – reference: AppsJATsangC-FDeep Injection Disposal of Hazardous and Industrial Waste1996San DiegoAcad. Press – reference: ComptonKLNovikovVParkerFLDeep well injection of liquid radioactive waste at Krasnoyarsk-26, V.I2000LaxenburgInst. Appl. Syst. Anal. – reference: GebkhartBDzhaluriyaIMakhadzhanRSammakiyaBSvobodnokonvektivnyetecheniya, teploimassoobmen1991MoscowMir(Free Convection Flows, Heat and Mass Exchange) – reference: MalkovskyVIPekAAVelichkinVIParkerFLPrediction of contaminant plume movement from the deep-well injection of liquid radioactive waste (LRW) at the Krasnoyarsk disposal siteHydrolog. Sci. and Technology J.199915s.1–4145171 – reference: VladimirovVSUravneniyamatematicheskoifiziki1971MoscowNauka(Equations of Mathematical Physics) – reference: Rybal’chenkoAIPimenovMKKostinPPGlubinnoe zakhoronenie zhidkikh radioaktivnykh otkhodov1994MoscowIzdAT(Deep Disposal of Liquid Radioactive Wastes) – reference: Mal’kovskiiVIVelichkinVIGorlinskiiYuEVladimirovaEIA Model of Radionuclide Transfer by Groundwater on the Territory of the Russian Research Centre Kurchatov InstituteGeol. Rudn. Mestorozhd.2009514275289 – reference: MironenkoVADinamika podzemnykh vod1996MoscowMosk.Gosud. Gorn. Univ.(Ground-water Dynamics) – volume-title: Deep Injection Disposal of Hazardous and Industrial Waste year: 1996 ident: 6405_CR7 – volume-title: Uravneniyamatematicheskoifiziki year: 1971 ident: 6405_CR1 – volume: 51 start-page: 275 issue: 4 year: 2009 ident: 6405_CR3 publication-title: Geol. Rudn. Mestorozhd. – volume-title: Deep well injection of liquid radioactive waste at Krasnoyarsk-26, V.I year: 2000 ident: 6405_CR6 – volume-title: Glubinnoe zakhoronenie zhidkikh radioaktivnykh otkhodov year: 1994 ident: 6405_CR5 – volume-title: Dinamika podzemnykh vod year: 1996 ident: 6405_CR4 – volume: 15 start-page: 145 issue: s.1–4 year: 1999 ident: 6405_CR8 publication-title: Hydrolog. Sci. and Technology J. – volume-title: Svobodnokonvektivnyetecheniya, teploimassoobmen year: 1991 ident: 6405_CR2 |
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SubjectTerms | Aquatic Pollution Aquifers Confined aquifers Contaminants Contamination Earth and Environmental Science Earth Sciences gravity Gravity effects groundwater Groundwater flow Groundwater pollution Hazardous materials hazardous waste Hazardous wastes Hydrogeology Hydrology/Water Resources Injection Liquid wastes Liquids mathematical models Mine wastes mining pollutants Radioactive wastes Waste materials Waste Utilization and Disposal Waste Water Technology Water Management Water Pollution Control |
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Title | Effect of natural advection on stabilization of contaminant plume in natural traps at underground disposal of liquid wastes |
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