A methodology providing new insights into the flow patterns of karst aquifers: an example from SW Türkiye

IF 3.7 2区 工程技术 Q3 ENGINEERING, ENVIRONMENTAL
Athanasios Maramathas, Konstantina Katsanou, Çağdaş Sağır, Alper Baba, Nikolaos Lambrakis
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Abstract

This paper presents a new and innovative methodology for the investigation of karst systems using spring discharge. The behaviour of springs in phase space is investigated by plotting the measurements of spring discharge versus the measurements of the water level at the spring’s outlet. Such a diagram reveals new features of the function of the karst system and the discharge pattern of the spring that are not captured by common research methods. The application of this method to the Azmak Spring in southwestern Türkiye revealed the existence of five distinct discharge subsystems that operate alternately and never simultaneously. They have a specific connection between them, while the transition from one to another is not random but follows a pattern. An attempt was made to interpret these features using concepts from percolation theory.

Abstract Image

提供岩溶含水层流动模式新见解的方法:图尔基耶西南部的一个实例
本文提出了一种利用泉水排放量研究岩溶系统的创新方法。通过绘制泉水排放量测量值与泉水出口水位测量值的对比图,研究泉水在相空间中的行为。这种图表揭示了一般研究方法无法捕捉到的岩溶系统功能和泉水排放模式的新特征。在图尔基耶西南部的阿兹马克泉应用这种方法后,发现存在五个不同的排泄子系统,它们交替运行,从不同时出现。它们之间有特定的联系,而从一个子系统向另一个子系统的过渡也不是随机的,而是有规律可循的。我们试图用渗流理论的概念来解释这些特征。
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来源期刊
Bulletin of Engineering Geology and the Environment
Bulletin of Engineering Geology and the Environment 工程技术-地球科学综合
CiteScore
7.10
自引率
11.90%
发文量
445
审稿时长
4.1 months
期刊介绍: Engineering geology is defined in the statutes of the IAEG as the science devoted to the investigation, study and solution of engineering and environmental problems which may arise as the result of the interaction between geology and the works or activities of man, as well as of the prediction of and development of measures for the prevention or remediation of geological hazards. Engineering geology embraces: • the applications/implications of the geomorphology, structural geology, and hydrogeological conditions of geological formations; • the characterisation of the mineralogical, physico-geomechanical, chemical and hydraulic properties of all earth materials involved in construction, resource recovery and environmental change; • the assessment of the mechanical and hydrological behaviour of soil and rock masses; • the prediction of changes to the above properties with time; • the determination of the parameters to be considered in the stability analysis of engineering works and earth masses.
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