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A marine groundwater spring in Stoupa, Greece: Shallow water instrumentation comparing radon and ambient sound with discharge rate

机译:希腊stoupa的海水地下水泉:浅水仪器比较氡气和环境声音与放电率

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摘要

This work describes the combination of two autonomous in-situ systems, one using the measurements of radon progenies and the other one using underwater ambient sound, for monitoring submarine groundwater discharge (SGD). The sensors were co-located on a platform and deployed in a SGD point source at Stoupa, Messinia, Greece. Long-term monitoring of radon progenies concentration as well as acoustic measurements are presented. The radon progeny data were correlated with the flow rate during one of the deployments. The ambient sound levels apparently responded to changes in the physical structure of the spring, but not in a predictable manner. The measuring platform can be easily applied to oceanographic survey activities, such as monitoring of gases and fluxes on submarine groundwater discharges, pockmarks, volcanoes, submarine faults, as well as to the measurement of rainfall freshwater flux at the ocean surface © 2010 Published by Elsevier Ltd.
机译:这项工作描述了两个自主的原位系统的组合,一个使用using气后代的测量,另一个使用水下环境声来监视海底地下水排放(SGD)。传感器共放置在一个平台上,并部署在希腊墨西尼亚Stoupa的SGD点源中。介绍了monitoring子代浓度的长期监测以及声学测量。 the气后代数据与其中一种部署期间的流速相关。环境声级显然响应于弹簧物理结构的变化,但不是以可预测的方式响应。该测量平台可轻松应用于海洋学调查活动,例如监测海底地下水排放,麻点,火山,海底断层中的气体和通量,以及测量海面降雨淡水通量©2010 Elsevier发布有限公司

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