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A compact field fluorometer and its application to dye tracing in karst environments

机译:一种紧凑的场荧光计及其在岩溶环境中染色追踪的应用

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摘要

Dye tracing is a classic technique in hydrogeology to investigate surface-water or groundwater flow characteristics, and it is useful for many applications including natural or industrial issues. The Fluo-Green field fluorometer has been successfully tested in a karst environment and is specifically suitable for in-cave karst water monitoring. Karst research often uses dyes to obtain information about groundwater flow in unexplored cave passages. The compact device, alternatively named Fluo-G, meets the requirements of cave media: small (10 x 16 x 21 cm), lightweight (0.75 kg without ballast) and simple in conception. It is easy for cavers to set up and handle compared to other sampling methods. The fluorometer records uranine, turbidity and temperature with a user-defined time-step (1 min(-1) day). Very low energy consumption allows 9,000 measurements with six AA batteries. The device was calibrated and tested in the laboratory and in field conditions in Belgian karst systems. Results are in good fit with other sampling methods: in-situ fluorometers and automatic water sampling plus laboratory analysis. Recording high quality data (breakthrough curves) in karst with in-cave monitoring is valuable to improve knowledge of karst systems. Many hydrological and hydrogeological applications can benefit from such a low-cost and compact device, and finding the best compromise between resources and quality data is essential. Several improvements are possible but preliminary field tests are very promising.
机译:染料跟踪是水文地质学的经典技术,用于研究表面水或地下水流动特性,可用于许多应用包括自然或工业问题。荧光绿地荧光计已在岩溶环境中成功进行测试,专门适用于洞穴岩溶水分监测。喀斯特研究通常使用染料来获取有关未探索洞穴通道中地下水流的信息。替代名为Fluo-G的紧凑型器件符合洞穴介质的要求:小(10 x 16 x 21厘米),轻量级(无镇流器0.75千克)和简单的概念。与其他采样方法相比,洞穴很容易设置和处理。荧光计通过用户定义的时间步(1分钟(-1)天)记录铀,浊度和温度。能量消耗非常低,允许六个AA电池9,000次测量。该装置在实验室和比利时岩溶系统的现场条件下进行校准并进行测试。结果良好适合其他采样方法:原位荧光仪和自动水采样加上实验室分析。在洞穴监测中记录喀斯特的高质量数据(突破性曲线)是有价值的,可以提高岩溶系统的知识。许多水文和水文地质应用可以受益于这种低成本和紧凑的装置,并在资源和质量数据之间找到最佳折衷至关重要。几种改进是可能的,但初步现场测试非常有前途。

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