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Package pdftex.def Info: C:/Users/joseph.caracappa/Documents/GitHub/READ-EDAB-SOE_reports/SOE2026_NEFMC_IR_files/figure-latex/docformat-1.pdf used on input line 1865.
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Copy file name to clipboardExpand all lines: parent_report.Rmd
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@@ -515,11 +515,11 @@ The Northeast U.S. region experienced colder than average ocean temperatures, de
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#### Northwest Atlantic Phenomena
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The below average temperatures observed in 2024 persisted into 2025, although there are seasonal and local exceptions to this pattern. Anomalously cold surface conditions (Fig. \ref{fig:slopesea-bottom})(Fig. \ref{fig:slopesea}) were recorded throughout the Northeast Shelf and were widespread across the Slope Sea for much of the year, however the waters were not as fresh as recorded in 2024. Winter bottom temperatures were also below average across much of the Northeast Shelf (Fig. 96b). Multiple oceanographic and atmospheric factors can contribute to these cooler conditions including a more southerly Gulf Stream and higher proportions of Labrador Slope and Scotian Shelf water entering the system.
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```{r slopesea-bottom, out.width="65%", fig.cap=return_caption(chunk_name = "slopesea-bottom", region = "BothReports")}
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```{r slopesea-bottom, out.width="65%", fig.cap=return_caption(chunk_name = "slopesea-bottom", region = "BothReports"),fig.height= 3}
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return_plot("slopesea-bottom", region = "BothReports")
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```
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```{r slopesea, out.width="65%", fig.cap=return_caption(chunk_name = "slopesea", region = "BothReports")}
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2025 total primary production was below average in Georges Bank and the Mid-Atlantic due to lower phytoplankton biomass and cooler sea surface temperatures. [Phytoplankton biomass](https://noaa-edab.github.io/catalog/chl_pp.html?q=phyt#chl_pp) (shown as chlorophyll a concentration) was also below average for much of 2025 (Fig. \ref{fig:chl-anom-apr})(Fig. \ref{fig:chl-anom-oct}). In particular, the winter-spring bloom period, which typically accounts for a significant proportion to total annual phytoplankton production, was shorter in duration and lower in magnitude across the entire Northeast shelf region. The fall bloom period was above average in the Gulf of Maine and Georges Bank, but near average in the Mid-Atlantic.
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```{r chl-anom-apr, fig.asp=.5, fig.cap=return_caption(chunk_name = "chl-anom-apr", region = "BothReports")}
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```{r chl-anom-apr, out.width="65%", fig.cap=return_caption(chunk_name = "chl-anom-apr", region = "BothReports")}
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return_plot("chl-anom-apr", region = "BothReports")
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```
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```{r chl-anom-oct, fig.asp=.5, fig.cap=return_caption(chunk_name = "chl-anom-oct", region = "BothReports")}
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```{r chl-anom-oct, out.width="65%", fig.cap=return_caption(chunk_name = "chl-anom-oct", region = "BothReports")}
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return_plot("chl-anom-oct", region = "BothReports")
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```
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In Chesapeake Bay, colder than average winter 2025 temperatures (Fig. 100) were reported by state agencies as a likely cause of higher blue crab mortality rates compared to the previous winter. Colder winters generally indicate good conditions for striped bass spawning, and while the striped bass juvenile index slightly improved, it was still well below the long-term average. Several years of low striped bass recruitment is a growing concern of fisheries managers. Factors that could be influencing striped bass include below average winter-to-spring freshwater flow and above average water temperatures combined with stressful dissolved oxygen values during the summer. The continued presence of invasive blue catfish and the effect they are having on blue crab, alosines, menhaden, and striped bass populations is also a management concern.
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```{r chesapeake-jan, fig.asp=.5, fig.cap=return_caption(chunk_name = "chesapeake-jan", region = "BothReports")}
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```{r chesapeake-jan, out.width="30%", fig.cap=return_caption(chunk_name = "chesapeake-jan", region = "BothReports")}
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return_plot("chesapeake-jan", region = "BothReports")
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```
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```{r chesapeake-apr, fig.asp=.5, fig.cap=return_caption(chunk_name = "chesapeake-apr", region = "BothReports")}
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```{r chesapeake-apr, out.width="30%", fig.cap=return_caption(chunk_name = "chesapeake-apr", region = "BothReports")}
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return_plot("chesapeake-apr", region = "BothReports")
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