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Classification of karst springs for flash-flood-prone areas in western Turkey

机译:土耳其西部多发洪水地区岩溶泉的分类

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Flash floods are caused by heavy rainfall that has become more frequent. They are more prominent in low-storage karst regions, although karst terrain often acts as a natural flood control particularly when it is bare and dominated by conduits. A study using a hydrogeochemical approach and assessing data from several springs in different carbonate rock in western Turkey has made it possible to classify karst aquifers based on their response to heavy rainfall events. According to this aim, physico-chemical measurements in wet and dry seasons and discharge rates in springs are compared in order to explain aquifer characteristics. Groundwater samples have a pH ranging from 6.3 to 8.9, temperature (T) varying from 7 to 35 degrees C and electrical conductivity (EC) ranging from 140 to 998 mu s cm(-1). Groundwater samples with high EC, high T and low dissolved oxygen (DO) represent the deep circulating water, while low EC, low T and high DO are linked to the shallow circulating water. Lower variability between wet and dry seasons reveals that fracture permeability is predominantly controlled by diffuse groundwater flow with low or high storage, and conduit permeability with high storage. However, variability of the physico-chemical characteristics is higher in a conduit permeability with low storage. These types of aquifers with high transfer capability, predominantly controlled by turbulent groundwater flow, affect flash floods.
机译:暴雨是由暴雨引起的,暴雨变得更加频繁。尽管在通常情况下,岩溶地形是自然的防洪措施,尤其是在裸露且以管道为主导的地形中,但它们在低存储岩溶地区更为突出。一项使用水文地球化学方法进行的研究,并评估了土耳其西部不同碳酸盐岩中数个泉水的数据,从而可以根据岩溶含水层对强降雨事件的响应来对其进行分类。根据该目标,比较了干季和湿季的理化测量值和春季的出水率,以解释含水层的特征。地下水样品的pH值范围为6.3至8.9,温度(T)范围为7至35摄氏度,电导率(EC)范围为140至998μs cm(-1)。高EC,高T和低溶解氧(DO)的地下水样品代表深循环水,而低EC,低T和高DO与浅循环水有关。湿季和干季之间较低的变异性表明,裂缝渗透率主要受储量低或高的分散地下水流和储量高的导管渗透性控制。然而,在具有低存储量的导管渗透性中,理化特性的可变性较高。这些类型的具有高转移能力的含水层主要受湍流的地下水流量控制,会影响山洪暴发。

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