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Radon (Rn) as tracer for submarine groundwater discharge investigation-limitations of the approach at shallow wind-exposed coastal settings. | LitMetric

AI Article Synopsis

  • Radon mapping is a common method used to detect and measure submarine groundwater discharge (SGD) in coastal areas, but challenges arise in shallow and wind-exposed environments.
  • This paper identifies and analyzes the reasons for failures experienced when applying the radon method in a specific shallow site in the Baltic Sea, focusing on the roles of wind speed and wind direction.
  • The findings suggest that wind-related factors significantly affect radon distribution in coastal settings, indicating that these variables must be accounted for both during and before research activities to ensure accurate SGD assessments.

Article Abstract

Mapping radon (Rn) distribution patterns in the coastal sea is a widely applied method for localizing and quantifying submarine groundwater discharge (SGD). While the literature reports a wide range of successful case studies, methodical problems that might occur in shallow wind-exposed coastal settings are generally neglected. This paper evaluates causes and effects that resulted in a failure of the radon approach at a distinct shallow wind-exposed location in the Baltic Sea. Based on a simple radon mass balance model, we discuss the effect of both wind speed and wind direction as causal for this failure. We show that at coastal settings, which are dominated by gentle submarine slopes and shallow waters, both parameters have severe impact on coastal radon distribution patterns, thus impeding their use for SGD investigation. In such cases, the radon approach needs necessarily to allow for the impact of wind speed and wind direction not only during but also prior to the field campaign.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9482587PMC
http://dx.doi.org/10.1007/s10661-022-10462-5DOI Listing

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