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[Faunistic study of the submarine cave "Tunel de la Atlantida", Jameos del Agua, Lanzarote]
1985
Garcia-Valdecasas Huelin, A. (Consejo Superior de Investigaciones Cientificas, Madrid (Spain). Museo Nacional de Ciencias Naturales)
Analysis of water control in an underground mine under strong karst media influence (Vazante mine, Brazil) | Analyse du contrôle de l’eau dans une mine souterraine sous forte influence d’un milieu karstique (mine de Vazante, Brésil) Análisis del control del agua en una mina subterránea bajo fuerte influencia del medio kárstico (mina Vazante, Brasil) 强烈岩溶介质影响下地下矿控水分析(巴西Vazante矿) Análise do controle da água em uma mina subterrânea sob forte influência do meio cárstico (mina Vazante, Brasil) Full text
2018
Ninanya, Hugo | Guiguer, Nilson | Vargas, Eurípedes A. Jr | Nascimento, Gustavo | Araujo, Edmar | Cazarin, Caroline L.
This work presents analysis of groundwater flow conditions and groundwater control measures for Vazante underground mine located in the state of Minas Gerais, Brazil. According to field observations, groundwater flow processes in this mine are highly influenced by the presence of karst features located in the near-surface terrain next to Santa Catarina River. The karstic features, such as caves, sinkholes, dolines and conduits, have direct contact with the aquifer and tend to increase water flow into the mine. These effects are more acute in areas under the influence of groundwater-level drawdown by pumping. Numerical analyses of this condition were carried out using the computer program FEFLOW. This program represents karstic features as one-dimensional discrete flow conduits inside a three-dimensional finite element structure representing the geologic medium following a combined discrete-continuum approach for representing the karst system. These features create preferential flow paths between the river and mine; their incorporation into the model is able to more realistically represent the hydrogeological environment of the mine surroundings. In order to mitigate the water-inflow problems, impermeabilization of the river through construction of a reinforced concrete channel was incorporated in the developed hydrogeological model. Different scenarios for channelization lengths for the most critical zones along the river were studied. Obtained results were able to compare effectiveness of different river channelization scenarios. It was also possible to determine whether the use of these impermeabilization measures would be able to reduce, in large part, the elevated costs of pumping inside the mine.
Show more [+] Less [-]Basin-scale conceptual groundwater flow model for an unconfined and confined thick carbonate region | Modèle conceptuel d’écoulements d’eau souterraine à l’échelle d’un basin pour une région carbonatée épaisse libre et captive Modelo conceptual de flujo de agua subterránea a escala de cuenca para un acuífero no confinado y uno confinado en una región de potentes carbonatos 非承压和承压厚层碳酸盐地区流域尺度地下水流概念模型 Modelo conceitual de escoamento de água subterrânea na escala da bacia para uma região carbonácia espessa Full text
2015
Mádl-Szőnyi, Judit | Tóth, Ádám
Application of the gravity-driven regional groundwater flow (GDRGF) concept to the hydrogeologically complex thick carbonate system of the Transdanubian Range (TR), Hungary, is justified based on the principle of hydraulic continuity. The GDRGF concept informs about basin hydraulics and groundwater as a geologic agent. It became obvious that the effect of heterogeneity and anisotropy on the flow pattern could be derived from hydraulic reactions of the aquifer system. The topography and heat as driving forces were examined by numerical simulations of flow and heat transport. Evaluation of groups of springs, in terms of related discharge phenomena and regional chloride distribution, reveals the dominance of topography-driven flow when considering flow and related chemical and temperature patterns. Moreover, heat accumulation beneath the confined part of the system also influences these patterns. The presence of cold, lukewarm and thermal springs and related wetlands, creeks, mineral precipitates, and epigenic and hypogenic caves validates the existence of GDRGF in the system. Vice versa, groups of springs reflect rock–water interaction and advective heat transport and inform about basin hydraulics. Based on these findings, a generalized conceptual GDRGF model is proposed for an unconfined and confined carbonate region. An interface was revealed close to the margin of the unconfined and confined carbonates, determined by the GDRGF and freshwater and basinal fluids involved. The application of this model provides a background to interpret manifestations of flowing groundwater in thick carbonates generally, including porosity enlargement and hydrocarbon and heat accumulation.
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