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Comparison of the isotope hydrogeological features of thermal and cold karstic waters in the Denizli Basin (Turkey) and Buda Thermal Karst (Hungary)

机译:代尼兹利盆地(土耳其)和布达热岩溶区(匈牙利)的热与冷岩溶水同位素水文地质特征比较

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摘要

Abstract The isotopic compositions of the Hungarian warm and cold water samples are spread in a wide range along the Global Meteoric Water Line (GMWL), which is a result of the significant change in the climate (mainly temperature) during infiltration (Last Glaciation and Holocene) and of the mixing process along the fault zone. The thermal karst water is isotopically lighter as it was infiltrated in a 7 to 9 °C cooler climate in the Ice Age. However, in the Denizli Basin isotopic composition of all of the thermal, lukewarm and cold waters varies in a relatively narrow range, with the exception of some warm waters whose d18O values have been shifted as a result of water-rock interaction.Isotope data prove that all the waters in the Denizli Basin infiltrated in the Holocene under more or less the same climate, so these waters are young indicating much shorter transit time from the recharge to the discharge areas because of faster flow under the surface or shorter path of the subsurface flow.
机译:摘要匈牙利暖水和冷水样品的同位素组成沿全球气象水线(GMWL)广泛分布,这是由于渗透(最后冰川和全新世)期间气候(主要是温度)发生重大变化的结果)和沿断裂带的混合过程。由于在冰河时代,在7至9°C的凉爽气候中渗透的喀斯特地热水较轻。然而,在德尼兹利盆地,所有热水,温水和冷水的同位素组成都在一个相对狭窄的范围内变化,除了一些温水的d18O值由于水-岩相互作用而发生了变化外,同位素数据证明在相同的气候下,代尼兹利盆地的所有水都在全新世渗透,因此这些水还很年轻,因为从地下到地下的流动速度更快,或者从地下的路径更短,这表明从补给到排泄的过渡时间要短得多流。

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