Accesso libero

Numerical analysis of the transport of brine in the Odra River downstream of a mine's discharge

INFORMAZIONI SU QUESTO ARTICOLO

Cita

Demchak, J., Skousen, J., McDonald, L. M. (2004). Longevity of Acid Discharges from Underground Mines Located above the Regional Water Table. J. Environ. Qual. pp. 656–668. 33 DemchakJ. SkousenJ. McDonaldL. M. 2004 Longevity of Acid Discharges from Underground Mines Located above the Regional Water Table J. Environ. Qual. 656 668 33 10.2134/jeq2004.656015074818 Search in Google Scholar

Gao, L., Barrett, D., Chen, Y., Zhou, M., Cuddy, S., Paydar, Z., Renzullo, L. (2014). A systems model combining process-based simulation and multi-objective optimisation for strategic management of mine water. Environmental Modelling & Software. pp. 250–264. 60 GaoL. BarrettD. ChenY. ZhouM. CuddyS. PaydarZ. RenzulloL. 2014 A systems model combining process-based simulation and multi-objective optimisation for strategic management of mine water Environmental Modelling & Software 250 264 60 10.1016/j.envsoft.2014.06.020 Search in Google Scholar

Gomes, C. J. B., Mendes, C. A. B., Costa, J. F. C. L. (2011). The Environmental Impact of Coal Mining: A Case Study in Brazil's Sangão Watershed, Mine Water Environ, pp. 159–168, 30. DOI 10.1007/s10230-011-0139-3. GomesC. J. B. MendesC. A. B. CostaJ. F. C. L. 2011 The Environmental Impact of Coal Mining: A Case Study in Brazil's Sangão Watershed Mine Water Environ 159 168 30 10.1007/s10230-011-0139-3 Open DOISearch in Google Scholar

Bleninger, T., Jirka G.H. (2011). Mixing zone regulation for effluent discharges into EU waters. In: Proceedings of the Institution of Civil Engineers - Water Management. pp. 387–396. 164:8 BleningerT. JirkaG.H. 2011 Mixing zone regulation for effluent discharges into EU waters In: Proceedings of the Institution of Civil Engineers - Water Management 387 396 164 8 10.1680/wama.900037 Search in Google Scholar

International network for Acid Prevention. (2009). Global Acid Rock drainage Guide (GARd Guide). Available at: http://www.gardguide.com International network for Acid Prevention 2009 Global Acid Rock drainage Guide (GARd Guide) Available at: http://www.gardguide.com Search in Google Scholar

Opitz, J., Timms, W. (2016). Mine water discharge quality – a review of classification frameworks. In: Proceedings of the International Mine Water Association. pp. 17–26, IMWA. Available at: https://www.imwa.info/docs/imwa_2016/IMWA2016_Opitz_58.pdf. OpitzJ. TimmsW. 2016 Mine water discharge quality – a review of classification frameworks In: Proceedings of the International Mine Water Association 17 26 IMWA Available at: https://www.imwa.info/docs/imwa_2016/IMWA2016_Opitz_58.pdf. Search in Google Scholar

Gzyl, G., Janson, E., Łabaj, P. (2017). Mine Water Discharges in Upper Silesian Coal Basin (Poland), in Bech, J., Bini, C., and Peshkevich, M. A. (Eds.) Assessment, Restoration And Reclamation Of Mining Influenced Soils. pp. 463–486. Academic Press – Elsevier GzylG. JansonE. ŁabajP. 2017 Mine Water Discharges in Upper Silesian Coal Basin (Poland) in BechJ. BiniC. PeshkevichM. A. (Eds.) Assessment, Restoration And Reclamation Of Mining Influenced Soils 463 486 Academic Press – Elsevier 10.1016/B978-0-12-809588-1.00017-7 Search in Google Scholar

Cañedo-Argüelles, M., Kefford, B. J., Piscart, C., Prat, N., Schäfer, R. B., Schulz, C. (2013). Salinisation of rivers: An urgent ecological issue. Environmental Pollution, 173, pp. 157–167. doi:10.1016/j.envpol.2012.10.011 Cañedo-ArgüellesM. KeffordB. J. PiscartC. PratN. SchäferR. B. SchulzC. 2013 Salinisation of rivers: An urgent ecological issue Environmental Pollution 173 157 167 10.1016/j.envpol.2012.10.011 23202646 Open DOISearch in Google Scholar

Jirka, G.H., Bleninger, T., Burrows, R., Larsen, T. (2004). Management of point source discharges into rivers: Where do environmental quality standards in the new EC-water framework directive apply?. International Journal of River Basin Management, 2:3, pp. 225–233 JirkaG.H. BleningerT. BurrowsR. LarsenT. 2004 Management of point source discharges into rivers: Where do environmental quality standards in the new EC-water framework directive apply? International Journal of River Basin Management 2 3 225 233 10.1080/15715124.2004.9635234 Search in Google Scholar

Cañedo-Argüelles, M. (2020). A review of recent advances and future challenges in freshwater salinization. Limnetica 39, 185–211 Cañedo-ArgüellesM. 2020 A review of recent advances and future challenges in freshwater salinization Limnetica 39 185 211 10.23818/limn.39.13 Search in Google Scholar

World Meteorological Organization (WMO). (2013). Planning of water quality monitoring systems. Technical Report Series No. 03. No. 1113 Available at: https://library.wmo.int/doc_num.php?explnum_id=7821 World Meteorological Organization (WMO) 2013 Planning of water quality monitoring systems Technical Report Series No. 03. No. 1113 Available at: https://library.wmo.int/doc_num.php?explnum_id=7821 Search in Google Scholar

Soroko, K. Danis, M. Gola, S. Turkiewicz, W. (2015). Proposal of salt deposit utilization in the range of ventilation and aero logical natural hazards on the level of copper ore deposit within “GGP” area. CUPRUM Czasopismo Naukowo-Techniczne Górnictwa Rud, nr 3 (76), pp. 115–130. SorokoK. DanisM. GolaS. TurkiewiczW. 2015 Proposal of salt deposit utilization in the range of ventilation and aero logical natural hazards on the level of copper ore deposit within “GGP” area CUPRUM Czasopismo Naukowo-Techniczne Górnictwa Rud 3 76 115 130 Search in Google Scholar

Zieliński, S., Stefanek, P., Kostecki, S.W. (2021). Zarządzanie zasobami wody przemysłowej na przykładzie OUOW Żelazny Most. In: Bezpieczeństwo Budowli Hydrotechnicznych. Edited by Winter, J. Winter, J. Wita, A. Popielski, P. Sieinski, E. Instytut Meteorologii i Gospodarki Wodnej Państwowy Instytut Badawczy, Warszawa pp. 63–72. ZielińskiS. StefanekP. KosteckiS.W. 2021 Zarządzanie zasobami wody przemysłowej na przykładzie OUOW Żelazny Most In: Bezpieczeństwo Budowli Hydrotechnicznych Edited by WinterJ. WinterJ. WitaA. PopielskiP. SieinskiE. Instytut Meteorologii i Gospodarki Wodnej Państwowy Instytut Badawczy Warszawa 63 72 Search in Google Scholar

Instytut OZE. (2018). Projekt budowlany: Wykonanie nowej instalacji rozprowadzającej w dnie rzeki Odra [Unpublished]. Kielce. Instytut OZE 2018 Projekt budowlany: Wykonanie nowej instalacji rozprowadzającej w dnie rzeki Odra [Unpublished]. Kielce Search in Google Scholar

Jarvis, A. P., Davis, J. E., Orme, P. H. A., Potter, H. A. B., Gandy, C. J. (2019). Predicting the Benefits of Mine Water Treatment under Varying Hydrological Conditions using a Synoptic Mass Balance Approach, Environ. Sci. Technol., 53, pp. 702–709. JarvisA. P. DavisJ. E. OrmeP. H. A. PotterH. A. B. GandyC. J. 2019 Predicting the Benefits of Mine Water Treatment under Varying Hydrological Conditions using a Synoptic Mass Balance Approach Environ. Sci. Technol. 53 702 709 10.1021/acs.est.8b0604730566333 Search in Google Scholar

Kruse, N. A., Stoertz, M. W., Green, D. H., Bowman, J. R., Lopez, D. L. (2014). Acidity Loading Behavior in Coal-Mined Watersheds, Mine Water Environ 33, pp. 177–186. DOI 10.1007/s10230-014-0269-5. KruseN. A. StoertzM. W. GreenD. H. BowmanJ. R. LopezD. L. 2014 Acidity Loading Behavior in Coal-Mined Watersheds Mine Water Environ 33 177 186 10.1007/s10230-014-0269-5 Open DOISearch in Google Scholar

Mack, B., Skousen, J., McDonald, L. M. (2015) Effect of Flow Rate on Acidity Concentration from Above-Drainage Underground Mines. Mine Water Environ 34, pp. 50–58. DOI 10.1007/s10230-014-0278-4 MackB. SkousenJ. McDonaldL. M. 2015 Effect of Flow Rate on Acidity Concentration from Above-Drainage Underground Mines Mine Water Environ 34 50 58 10.1007/s10230-014-0278-4 Open DOISearch in Google Scholar

Jirka, G.H. (2001). Large scale flow structures and mixing processes in shallow flows. J. of Hydraulic Research 39(6), pp. 567–573. DOI:10.1080/00221686.2001.9628285 JirkaG.H. 2001 Large scale flow structures and mixing processes in shallow flows J. of Hydraulic Research 39 6 567 573 10.1080/00221686.2001.9628285 Open DOISearch in Google Scholar

Ritta, A. G. S. L., Almeida, T. R., Chacaltana, J. T. A., Moreira, R. M. (2020). Numerical Analysis of the Effluent Dispersion in Rivers with Different Longitudinal Diffusion Coefficients, Journal of Applied Fluid Mechanics, Vol. 13, No. 5, pp. 1551–1559, 2020. DOI: 10.36884/jafm.13.05.31015. RittaA. G. S. L. AlmeidaT. R. ChacaltanaJ. T. A. MoreiraR. M. 2020 Numerical Analysis of the Effluent Dispersion in Rivers with Different Longitudinal Diffusion Coefficients Journal of Applied Fluid Mechanics 13 5 1551 1559 2020 10.36884/jafm.13.05.31015 Open DOISearch in Google Scholar

Kostecki, S.W. (2008). Numerical modelling of flow through moving water-control gates by vortex method. Part I – problem formulation. Archives of Civil and Mechanical Engineering 8(3), pp. 73–89. KosteckiS.W. 2008 Numerical modelling of flow through moving water-control gates by vortex method. Part I – problem formulation Archives of Civil and Mechanical Engineering 8 3 73 89 10.1016/S1644-9665(12)60164-2 Search in Google Scholar

Yakhot, V., Smith, L.M. (1992). The Renormalization Group, the ɛ-Expansion and Derivation of Turbulence Models. Journal of Scientific Computing, 7, No. 1. YakhotV. SmithL.M. 1992 The Renormalization Group, the ɛ-Expansion and Derivation of Turbulence Models Journal of Scientific Computing 7 1 10.1007/BF01060210 Search in Google Scholar

Sánchez-Juny, M., Triadú, A., Andreu, A., Bladé, E. (2019). Hydrodynamic Determination of the Kinematic Viscosity of Waste Brines. ACS Omega 4 (25), pp. 20987–20999. DOI: 10.1021/acsomega.9b02164 Sánchez-JunyM. TriadúA. AndreuA. BladéE. 2019 Hydrodynamic Determination of the Kinematic Viscosity of Waste Brines ACS Omega 4 25 20987 20999 10.1021/acsomega.9b02164 692127331867490 Open DOISearch in Google Scholar

eISSN:
2083-831X
Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
Geosciences, other, Materials Sciences, Composites, Porous Materials, Physics, Mechanics and Fluid Dynamics