Shorter Ice Duration and Changing Phenology Influence Under-Ice Lake Temperature Dynamics.

J Geophys Res Biogeosci

Biology Department SUNY New Paltz New Paltz NY USA.

Published: November 2024

AI Article Synopsis

  • * The timing of ice-off has become much more variable, influenced significantly by spring air temperatures and snowfall, leading to a reduction in total ice duration by about a month.
  • * Changes in ice phenology result in less winter inverse stratification, causing a longer spring mixing period, challenging the assumptions based on traditional ice clearance dates regarding under-ice thermal dynamics.

Article Abstract

Temperate lakes worldwide are losing ice cover but the implications for under-ice thermal dynamics are poorly constrained. Using a 92-year record of ice phenology from a temperate and historically dimictic lake, we examined trends, variability, and drivers of ice phenology and under-ice temperatures. The onset of ice formation decreased by 23 days century, which can be largely attributed to warming air temperatures. Ice-off date has become substantially more variable with spring air temperatures and cumulative February through April snowfall explaining over 80% of the variation in timing. As a result of changing ice phenology, total ice duration contracted by a month and more than doubled in interannual variability. Using weekly under-ice temperature profiles for the most recent 36 years, we found that shorter ice duration decreased winter inverse stratification and was associated with an extended spring mixing period. We illustrate the limitations of relying on discrete ice clearance dates in our assumptions around under-ice thermal dynamics by presenting high-frequency under-ice observations in two recent winters: one with intermittent ice cover and a year with slow spring ice clearance.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11584988PMC
http://dx.doi.org/10.1029/2024JG008382DOI Listing

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