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Traites concernant l' utilisation des cours d' eau internationaux a des fins autres que la navigation: Europe. Tratados sobre el uso de los cursos internacionales de agua para fines diferentes de la navegacion: Europa.
1993
Burchi S.
Geological and groundwater flow model of a submarine groundwater discharge site at Hanko (Finland), northern Baltic Sea | Modèles géologique et d’écoulement des eaux souterraines d’un site de décharge d’eau souterraine sous-marine à Hanko (Finlande), nord de la mer Baltique Modelo geológico y de flujo subterráneo de un sitio de descarga de aguas subterráneas submarinas en Hanko (Finlandia), en el norte del Mar Báltico 波罗的海北部芬兰汉科海底地下水排泄区的地质和地下水流模型 Modelo geológico e de fluxo de água subterrânea de um local de descarga submarina de água subterrânea em Hanko (Finlândia), norte do Mar Báltico Полный текст
2021
Luoma, Samrit | Majaniemi, Juha | Pullinen, Arto | Mursu, Juha | Virtasalo, Joonas J.
Three-dimensional geological and groundwater flow models of a submarine groundwater discharge (SGD) site at Hanko (Finland), in the northern Baltic Sea, have been developed to provide a geological framework and a tool for the estimation of SGD rates into the coastal sea. The dataset used consists of gravimetric, ground-penetrating radar and shallow seismic surveys, drill logs, groundwater level monitoring data, field observations, and a LiDAR digital elevation model. The geological model is constrained by the local geometry of late Pleistocene and Holocene deposits, including till, glacial coarse-grained and fine-grained sediments, post-glacial mud, and coarse-grained littoral and aeolian deposits. The coarse-grained aquifer sediments form a shallow shore platform that extends approximately 100–250 m offshore, where the unit slopes steeply seawards and becomes covered by glacial and post-glacial muds. Groundwater flow preferentially takes place in channel-fill outwash coarse-grained sediments and sand and gravel interbeds that provide conduits of higher hydraulic conductivity, and have led to the formation of pockmarks on the seafloor in areas of thin or absent mud cover. The groundwater flow model estimated the average SGD rate per square meter of the seafloor at 0.22 cm day⁻¹ in autumn 2017. The average SGD rate increased to 0.28 cm day⁻¹ as a response to an approximately 30% increase in recharge in spring 2020. Sensitivity analysis shows that recharge has a larger influence on SGD rate compared with aquifer hydraulic conductivity and the seafloor conductance. An increase in recharge in this region will cause more SGD into the Baltic Sea.
Показать больше [+] Меньше [-]The groundwater age in the Middle-Upper Devonian aquifer system, Lithuania | Das Grundwasseralter des Aquifersystems im mittleren oberen Devon, Litauen L’âge de l’eau souterraine dans le système aquifère Dévonien Moyen-Supérieur, Lithuanie La edad de las aguas subterráneas en el sistema acuífero Devónico medio superior, Lituania A idade da água subterrânea no sistema aquífero Devónico Médio-Superior, Lituânia Полный текст
2009
Mokrik, R. | Mažeika, J. | Baublytė, A. | Martma, T.
³H, δ¹³C and hydrochemical data were used to estimate the corrected groundwater age derived from conventional ¹⁴C age of dissolved inorganic carbon (DIC). The Middle-Upper Devonian aquifer system from the Baltic upland recharge area in eastern Lithuania towards the discharge area on the Baltic Sea coast in the west was considered. The concentration of total dissolved solids (TDS) in groundwater changes from 300 to 24,000 mg/L and increases downgradient towards the coast. The other major constituents have the same trend as the TDS. The hydrochemical facies of groundwater vary from an alkali-earth carbonates facies at the eastern upland area to an alkali-earth carbonate-sulfate and chloride facies at transit and discharge areas. Meteoric water percolating through the Quaternary and Devonian aquifers regulate the initial ¹⁴C activities of groundwater involving two main members of DIC: soil CO₂ with modern ¹⁴C activity uptake and dissolution of ¹⁴C-free aquifer carbonates. Other sources of DIC are less common. ¹⁴C activity of DIC in the groundwater ranged from 60 to 108 pMC at the shallow depths. With an increase of the aquifers depth the dolomitization of aqueous solution and leakage of the “old” groundwater from lower aquifers take place, traced by lower activities (7–30 pMC).
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