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Stable Isotope Techniques as a Tool in Hydrogeological Conceptualisation of Ayazmant Mine Site (NW Turkey)

机译:稳定的同位素技术作为Ayazmant矿山地质地质概念化的工具(NW土耳其)

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Ayazmant mine site is situated in the near vicinity of a dam reservoir being utilized for drinking and irrigation purposes. The mine is planned to be extracted by combination of two methods: open pit mining followed by underground mining. Most part of the operations will take place below the groundwater level. Preliminary hydrogeological assessment has revealed that the groundwater system is in connection with the dam reservoir. Prediction of groundwater inflow to both the open pit and the underground galleries and calculation the ratio of reservoir water in the inflow were the major questions. Numerical modeling was the methodology selected to be followed to achieve these objectives. Reliability of the numerical model is based on the accuracy of the hydrogeological model of the site. Hydrogeological conceptualization requires detailed geological hydrological and hydrogeological information. These studies give sufficient information on the occurrence, potential, availability and flow of groundwater systems. However, knowledge of interactions with different water bodies requires information on the flow path and velocity of a particle in the system. Isotopic constituents of water bodies provides this information. Particularly, stable isotopes are very useful in tracing the origin of the waters, mixing processes and interactions. This technique was used in conceptualization of the hydrogeological system in the mine site. The hydrogeological conceptual model suggested that the groundwater system is recharged mainly from highlands but also in connection with the dam reservoir. The water level fluctuation in the reservoir affects the interaction between the groundwater system in the mine site and the reservoir.
机译:Ayazmant Mine网站位于靠近的坝储层附近,用于饮用和灌溉目的。计划通过两种方法组合提取矿井:露天矿井,随后是地下采矿。这些操作的大部分将在地下水位下面进行。初步水文地质评估揭示了地下水系统与坝储层有关。对露天坑和地下画廊的地下水流入的预测和计算流入中的水库水中的主要问题。数值建模是选择遵循的方法,以实现这些目标。数值模型的可靠性基于现场水文地质模型的准确性。水文地质概念化需要详细的地质水文和水文地质信息。这些研究提供了有关地下水系统的发生,潜在,可用性和流量的充分信息。然而,与不同水体的相互作用的知识需要关于系统中粒子的流动路径和速度的信息。水体的同位素成分提供了这些信息。特别地,稳定同位素在追踪水的起源,混合过程和相互作用非常有用。该技术用于矿区水文地质系统的概念化。水文地质概念模型表明,地下水系统主要来自高原,但也与坝水库有关。储层中的水位波动影响矿场地区地下水系统与水库之间的相互作用。

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