Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Properties and Mechanisms of Seawater Exchange in Marian Cove, King George Island, West Antarctic Peninsula

View through CrossRef
AbstractThe Antarctic Peninsula is one region that has recently experienced warming substantially more rapidly than the global mean over the past 50 years. Marian Cove is located in the South Shetland Islands connected to the Bransfield Strait via Maxwell Bay between King George Island and Nelson Island. In this study, we identified properties and mechanisms of seawater exchange in Marian Cove from multiple hydrographic surveys and a single bottom‐mounted mooring installed at the entrance to Marian Cove. Regardless of the season, the mean current velocity profiles at the entrance to Marian Cove were constant because of the influence of tidal forcing. Wind was the primary force that determined the variation in surface current; in response, a countercurrent occurred near the bottom area. We estimated salt transport to understand what effects Maxwell Bay′s saline water intrusion has on the Marian Cove environment. When the daily easterly wind was at its maximum of 18.5 m s−1, the salinity could increase to 7.20 × 10−4 g kg−1 in 1 day. In addition, the average freshwater residence time in Marian Cove for the quantitative evaluation of seawater exchange was approximately 9 days. However, the freshwater residence time was reduced to less than 2 days when there were extreme easterly winds.
Title: Properties and Mechanisms of Seawater Exchange in Marian Cove, King George Island, West Antarctic Peninsula
Description:
AbstractThe Antarctic Peninsula is one region that has recently experienced warming substantially more rapidly than the global mean over the past 50 years.
Marian Cove is located in the South Shetland Islands connected to the Bransfield Strait via Maxwell Bay between King George Island and Nelson Island.
In this study, we identified properties and mechanisms of seawater exchange in Marian Cove from multiple hydrographic surveys and a single bottom‐mounted mooring installed at the entrance to Marian Cove.
Regardless of the season, the mean current velocity profiles at the entrance to Marian Cove were constant because of the influence of tidal forcing.
Wind was the primary force that determined the variation in surface current; in response, a countercurrent occurred near the bottom area.
We estimated salt transport to understand what effects Maxwell Bay′s saline water intrusion has on the Marian Cove environment.
When the daily easterly wind was at its maximum of 18.
5 m s−1, the salinity could increase to 7.
20 × 10−4 g kg−1 in 1 day.
In addition, the average freshwater residence time in Marian Cove for the quantitative evaluation of seawater exchange was approximately 9 days.
However, the freshwater residence time was reduced to less than 2 days when there were extreme easterly winds.

Related Results

Study on the effect of seawater on making and curing of unreinforced concrete applications
Study on the effect of seawater on making and curing of unreinforced concrete applications
Concrete, an essential component of worldwide infrastructure, depends significantly on fresh water for its manufacturing, contributing to freshwater scarcity in many regions. As co...
Hydrography of Marian Cove, King George Island, West Antarctica: implications for ice-proximal sedimentation during summer
Hydrography of Marian Cove, King George Island, West Antarctica: implications for ice-proximal sedimentation during summer
AbstractDuring the summer, from 1996–2000, vertical profiles of conductivity, temperature and transmissivity were obtained near the tidewater glacier of Marian Cove, King George Is...
Tropical Pacific relationships with Southern Hemisphere atmospheric circulation and Antarctic climate
Tropical Pacific relationships with Southern Hemisphere atmospheric circulation and Antarctic climate
<p>Significant trends in high-latitude Southern Hemisphere atmospheric circulation and surface climate have been observed over recent decades, which are likely linked to tele...
Cloud and precipitation microphysics evaluated with ERA-5 and Polar WRF over the northern Antarctic Peninsula
Cloud and precipitation microphysics evaluated with ERA-5 and Polar WRF over the northern Antarctic Peninsula
&lt;p&gt;Synoptic-scale atmospheric circulation that transports moisture from lower latitudes highly influences the Antarctic coastal climate, warming and moistening the lo...
Changes in the spectrum and rates of extracellular enzyme activities in seawater following aggregate formation
Changes in the spectrum and rates of extracellular enzyme activities in seawater following aggregate formation
Abstract. Marine snow aggregates are heavily colonized by heterotrophic microorganisms that express high levels of hydrolytic activities, making aggregates hotspots for carbon remi...
Mixed cloud properties during high-intensity precipitation events over Northern Antarctic Peninsula&#160;
Mixed cloud properties during high-intensity precipitation events over Northern Antarctic Peninsula&#160;
&lt;p&gt;Antarctic Peninsula climate is a very sensitive system that is strongly affected by the temperature increase, compared to other Antarctic regions. Moisture transpo...
Distribution patterns and abundance of Antarctic pristine benthic communities
Distribution patterns and abundance of Antarctic pristine benthic communities
Knowledge of the abundance, distribution patterns, and population ecology of antarctic benthic biodiversity have increased considerably during the last decades. Antarctic marine be...
Mapping glacial sediment plumes in the Antarctic Peninsula using deep learning
Mapping glacial sediment plumes in the Antarctic Peninsula using deep learning
The subglacial discharge of sediment-rich meltwater plumes can be detected in satellite imagery where plumes reach the ocean surface at the terminus of tidewater glaciers. These me...

Back to Top