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Observaciones sobre la dieta de la culebra de agua Thamnophis hammondii en un oasis de Baja California Sur, México Texte intégral
2013
Luja, Víctor H. | Rodríguez Estrella, Ricardo | Sinervo, Barry
Information is presented about the prey consumed by the two-stripped garter snake Thamnophis hammondii in a mountain oasis in Baja California Sur, Mexico. The diet of this threatened snake includes the Baja California treefrog Pseudacris hypochondriaca curta (native species), as well as an exotic fish: the red bellied tilapia Tilapia sp. cf. zilli. This exotic species has become invasive in Baja California Sur oases, displacing native fishes and becoming an important dietary resource to T. hammondii.
Afficher plus [+] Moins [-]The transboundary non-renewable Nubian Aquifer System of Chad, Egypt, Libya and Sudan: classical groundwater questions and parsimonious hydrogeologic analysis and modeling | Le Système Aquifère Nubien fossile transfrontalier du Tchad, de l’Egypte, de la Lybie et du Soudan: questions classiques de nappe souterraine, analyse hydrogéologique simplifiée et modélisation El Sistema Acuífero Nubio transfronterizo no renovable en Chad, Egipto, Libia y Sudan: problemas clásicos de agua subterránea y el escaso análisis y modelado hidrogeológico 乍得、埃及、利比亚和苏丹跨国界不可更新的努比亚含水层系统:典型的地下水问题和简单的水文地质分析和模 O Sistema Aquífero transfronteiriço não renovável Núbio do Chade, Egito, Líbia e Sudão: problemas clássicos de água subterrânea, análise hidrogeológica parcimoniosa e modelação Texte intégral
2014
Voss, Clifford I. | Soliman, Safaa M.
Parsimonious groundwater modeling provides insight into hydrogeologic functioning of the Nubian Aquifer System (NAS), the world’s largest non-renewable groundwater system (belonging to Chad, Egypt, Libya, and Sudan). Classical groundwater-resource issues exist (magnitude and lateral extent of drawdown near pumping centers) with joint international management questions regarding transboundary drawdown. Much of NAS is thick, containing a large volume of high-quality groundwater, but receives insignificant recharge, so water-resource availability is time-limited. Informative aquifer data are lacking regarding large-scale response, providing only local-scale information near pumps. Proxy data provide primary underpinning for understanding regional response: Holocene water-table decline from the previous pluvial period, after thousands of years, results in current oasis/sabkha locations where the water table still intersects the ground. Depletion is found to be controlled by two regional parameters, hydraulic diffusivity and vertical anisotropy of permeability. Secondary data that provide insight are drawdowns near pumps and isotope-groundwater ages (million-year-old groundwaters in Egypt). The resultant strong simply structured three-dimensional model representation captures the essence of NAS regional groundwater-flow behavior. Model forecasts inform resource management that transboundary drawdown will likely be minimal—a nonissue—whereas drawdown within pumping centers may become excessive, requiring alternative extraction schemes; correspondingly, significant water-table drawdown may occur in pumping centers co-located with oases, causing oasis loss and environmental impacts.
Afficher plus [+] Moins [-]Analysis of groundwater flow in arid areas with limited hydrogeological data using the Grey Model: a case study of the Nubian Sandstone, Kharga Oasis, Egypt | Analyse du débit de nappe souterraine dans une zone aride avec des données hydrogéologiques limitées utilisant le Modèle de Grey: étude de cas du Grès Nubien, oasis de Kharga, Egypte Análisis de flujo de agua subterránea en áreas áridas con datos hidrogeológicos limitados usando el modelo Grey: un caso de estudio de las Areniscas de Nubian, Oasis de Kharga, Egipto Análise do fluxo das águas subterrâneas em zonas áridas com dados hidrogeológicos limitados usando o Modelo Cinza: um estudo de caso do Arenito Núbio, Oásis Kharga, Egito Texte intégral
2013
Mahmod, Wael Elham | Watanabe, Kunio | Zahr-Eldeen, Ashraf A.
Management of groundwater resources can be enhanced by using numerical models to improve development strategies. However, the lack of basic data often limits the implementation of these models. The Kharga Oasis in the western desert of Egypt is an arid area that mainly depends on groundwater from the Nubian Sandstone Aquifer System (NSAS), for which the hydrogeological data needed for groundwater simulation are lacking, thereby introducing a problem for model calibration and validation. The Grey Model (GM) was adopted to analyze groundwater flow. This model combines a finite element method (FEM) with a linear regression model to try to obtain the best-fit piezometric-level trends compared to observations. The GM simulation results clearly show that the future water table in the northeastern part of the study area will face a severe drawdown compared with that in the southwestern part and that the hydraulic head difference between these parts will reach 140 m by 2060. Given the uncertainty and limitation of available data, the GM produced more realistic results compared with those obtained from a FEM alone. The GM could be applied to other cases with similar data limitations.
Afficher plus [+] Moins [-]Hydrogeological investigation of an oasis-system aquifer in arid southeastern Morocco by development of a groundwater flow model | Investigation hydrogéologique du système aquifère des oasis du Sud-Est marocain aride par le développement d’un modèle d’écoulement des eaux souterraines Investigación hidrogeológica del sistema acuífero de oasis en el sudeste árido de Marruecos mediante el desarrollo de un modelo de flujo de agua subterránea 建立地下水流模型对摩洛哥东南部干旱地区绿洲系统含水层进行水文地质调查 Investigação hidrogeológica de um aquífero de sistema-oásis no sudeste árido do Marrocos pelo desenvolvimento de um modelo de fluxo de águas subterrâneas Texte intégral
2016
Bouaamlat, Ilias | Larabi, Abdelkader | Faouzi, Mohamed
Groundwater of the Tafilalet oasis system (TOS) is an important water resource in the lower Ziz and Rheris valleys of arid southeastern Morocco. The unconfined aquifer is exploited for domestic consumption and irrigation. A groundwater flow model was developed to assess the impact of climatic variations and development, including the construction of hydraulic structures, on the hydrodynamic behavior of the aquifer. Numerical simulations were performed by implementing a spatial database within a geographic information system and using the Arc Hydro Groundwater tool with the code MODFLOW-2000. The results of steady-state and transient simulations between 1960 and 2011 show that the water table is at equilibrium between recharge, which is mainly by surface-water infiltration, and discharge by evapotranspiration. After the commissioning of the Hassan Addakhil dam in 1971, hydraulic heads became more sensitive to annual variations than to seasonal variations. Heads are also influenced by recurrent droughts and the highest water-level changes are recorded in irrigated areas. The model provides a way of managing groundwater resources in the TOS. It can be used as a tool to predict the impact of different management plans for the protection of groundwater against overexploitation and deterioration of water quality.
Afficher plus [+] Moins [-]Understanding long-term groundwater flow at Pahute Mesa and vicinity, Nevada National Security Site, USA, from naturally occurring geochemical and isotopic tracers | Compréhension des écoulements à long terme des eaux souterraines à Pahute Mesa et dans les environs, Nevada National Security Site, Etats-Unis d’Amériques, à partir de traceurs géochimiques et isotopiques d’origine naturelle Reconocimiento del flujo de agua subterránea a largo plazo en Pahute Mesa y sus alrededores, Nevada National Security Site, EE.UU., a partir de trazadores geoquímicos e isotópicos naturales 基于天然地球化学和同位素示踪剂了解美国内华达州国家安全区Pahute Mesa 及附近的长期地下水运动 Entendendo o fluxo de águas subterrâneas de longo termo em Pahute Mesa e proximidades, Nevada National Security Site, EUA, a partir da ocorrência natural de traçadores isotópicos e geoquímicos Texte intégral
2021
Kwicklis, Edward | Farnham, Irene | Hershey, R. L. (Ronald L.) | Visser, Ate | Hoaglund, John III
Recently collected naturally occurring geochemical and isotopic groundwater tracers were combined with historic data from the Pahute Mesa area of the Nevada National Security Site (NNSS), Nevada, USA, to provide insights into long-term regional groundwater flow patterns, mixing and recharge. Pahute Mesa was the site of 85 nuclear detonations between 1965 and 1992, many of them deeply buried devices that introduced radionuclides directly into groundwater. The dataset examined included major ions and field measurements, stable isotopes of hydrogen (δ²H), oxygen (δ¹⁸O), carbon (δ¹³C) and sulfur (δ³⁴S), and radioisotopes of carbon (¹⁴C) and chloride (³⁶Cl). Analysis of the patterns of groundwater ¹⁴C data and the δ²H and δ¹⁸O signatures indicates that groundwater recharge is predominantly of Pleistocene age, except for a few localized areas near major ephemeral drainages. Steep gradients in sulfate (SO₄) and chloride (Cl) define a region near the western edge of the NNSS where high-concentration groundwater flowing south from north of the NNSS merges with dilute groundwater flowing west from eastern Pahute Mesa in a mixing zone that coincides with a groundwater trough associated with major faults. The ³⁶Cl/Cl and δ³⁴S data suggest that the source of the high Cl and SO₄ in the groundwater was a now-dry, pluvial-age playa lake north of the NNSS. Patterns of groundwater flow indicated by the combined data sets show that groundwater is flowing around the northwest margin of the now extinct Timber Mountain Caldera Complex toward regional discharge areas in Oasis Valley.
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