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1968 to Present
Abstract contains all words: SALINITY BERING SEA

Cont. #: 1155
Aagaard, K., C.H. Pease, A.T. Roach, and S.A. Salo (1989): Beaufort Sea mesoscale circulation study—Final Report. NOAA Tech. Memo. ERL PMEL-90, NTIS: PB90–158775, 114 pp. [PDF Version]
Cont. #: 2885
Aagaard, K., T.J. Weingartner, S.L. Danielson, R.A. Woodgate, G.C. Johnson, and T.E. Whitledge (2006): Some controls on flow and salinity in Bering Strait. Geophys. Res. Lett., 33(19), L19602, doi: 10.1029/2006GL026612.
Cont. #: 3995
Cheng, W., E. Curchitser, C. Ladd, P.J. Stabeno, and M. Wang (2014): Influences of sea ice on the eastern Bering Sea: NCAR CESM simulations and comparison with observations. Deep-Sea Res. II, 109, 27–38, doi: 10.1016/j.dsr2.2014.03.002.
Cont. #: 270
Coachman, L.K., and R.L. Charnell (1977): Finestructure in outer Bristol Bay, Alaska. Deep-Sea Res., 24, 869–889, doi: 10.1016/0146-6291(77)90557-4.
Cont. #: 4130
Cokelet, E.D. (2016): 3-D water properties and geostrophic circulation on the eastern Bering Sea shelf. Deep-Sea Res. II, 134, 65–85, doi: 10.1016/j.dsr2.2016.08.009, Understanding Ecosystem Processes in the Eastern Bering Sea IV.
Cont. #: 1696
Cokelet, E.D., and P.J. Stabeno (1997): Mooring observations of the thermal structure, salinity, and currents in the SE Bering Sea basin. J. Geophys. Res., 102(C10), 22,947–22,964, doi: 10.1029/97JC00881.
Cont. #: 3906
Cross, J.N., J.T. Mathis, N.R. Bates, and R.H. Byrne (2013): Conservative and non-conservative variations of total alkalinity on the Southeastern Bering Sea Shelf. Mar. Chem., 154, 100–112, doi: 10.1016/j.marchem.2013.05.012.
Cont. #: 3769
Danielson, S., E. Curchitser, K. Hedstrom, T. Weingartner, and P. Stabeno (2011): On ocean and sea ice modes of variability in the Bering Sea. J. Geophys. Res., 116(C12), C12034, doi: 10.1029/2011JC007389.
Cont. #: 4997
Danielson, S.L., O. Ahkinga, C. Ashjian, E. Basyuk, L.W. Cooper, L. Eisner, E. Farley, K.B. Iken, J.M. Grebmeier, L. Juranek, G. Khen, S. Jayne, T. Kikuchi, C. Ladd, K. Lu, R.M. McCabe, G.W.K. Moore, S. Nishino, F. Ozenna, R.S. Pickart, I. Polyakov, P.J. Stabeno, R. Thoman, W.J. Williams, K. Wood, and T.J. Weingartner (2020): Manifestation and consequences of warming and altered heat fluxes over the Bering and Chukchi Sea continental shelves. Deep-Sea Res. II, 177, 104781, doi: 10.1016/j.dsr2.2020.104781, View online.
Cont. #: 4363
Danielson, S.L., L. Eisner, C. Ladd, C. Mordy, L. Sousa, and T.J. Weingartner (2017): A comparison between late summer 2012 and 2013 water masses, macronutrients, and phytoplankton standing crops in the northern Bering and Chukchi seas. Deep-Sea Res. II, 135, Arctic Ecosystem Integrated Survey (Arctic EIS): Marine ecosystem dynamics in the rapidly changing Pacific Arctic Gateway, 7–26, doi: 10.1016/j.dsr2.2016.05.024, Available online.
Cont. #: 1764
Flosadóttir, Á.H., J.C. Larsen, and J.C. Smith (1997): The relation of seafloor voltages to ocean transports in north Atlantic circulation models: Model results and practical considerations for transport monitoring. J. Phys. Oceanogr., 27(8), 1547–1565, doi: 10.1175/1520-0485(1997)027<1547:TROSVT>2.0.CO;2.
Cont. #: 4165
Gann, J.C., L.B. Eisner, S. Porter, J.T. Watson, K.D. Cieciel, C.W. Mordy, E.M. Yasumiishi, P.J. Stabeno, C. Ladd, R.A. Heintz, and E.V. Farley (2016): Possible mechanism linking ocean conditions to low body weight and poor recruitment of age-0 walleye pollock (Gadus chalcogrammus) in the southeast Bering Sea during 2007. Deep-Sea Res. II, 134, 115–127, doi: 10.1016/j.dsr2.2015.07.010, Understanding Ecosystem Processes in the Eastern Bering Sea IV.
Cont. #: 5350
Hennon, T.D., S.L. Danielson, R.A. Woodgate, B. Irving, D.A. Stockwell, and C.W. Mordy (2022): Mooring measurements of Anadyr Current nitrate, phosphate, and silicate enable updated Bering Strait nutrient flux estimates. Geophys. Res. Lett., 49(16), e2022GL098908, doi: 10.1029/2022GL098908, View online.
Cont. #: 3939
Hermann, A.J., G.A. Gibson, N.A. Bond, E.N. Curchitser, K. Hedstrom, W. Cheng, M. Wang, P.J. Stabeno, L. Eisner, and K.D. Cieciel (2013): A multivariate analysis of observed and modeled biophysical variability on the Bering Sea shelf: Multidecadal hindcasts (1970-2009) and forecasts (2010-2040). Deep-Sea Res. II, 94, 121–139, doi: 10.1016/j.dsr2.2013.04.007.
Cont. #: 2299
Hermann, A.J., P.J. Stabeno, D.B. Haidvogel, and D.L. Musgrave (2002): A regional tidal/subtidal circulation model of the southeastern Bering Sea: Development, sensitivity analyses and hindcasting. Deep-Sea Res. Pt. II, 49(26), 5945–5967, doi: 10.1016/S0967-0645(02)00328-4.
Cont. #: 4084
Hollowed, A.B., S. Barbeaux, E.D. Cokelet, S. Kotwicki, R. Lauth, P. Ressler, P. Stabeno, and C. Wilson (2013): Fish forage distribution and ocean conditions. NPRB BSIERP Project B62 Final Report, North Pacific Research Board, 416 pp, Available online at www.nprb.org.
Cont. #: 4706
Johnson, G.C., and P.J. Stabeno (2017): Deep Bering Sea circulation and variability, 2001–2016, from Argo data. J. Geophys. Res., 122(12), 9765–9779, doi: 10.1002/2017JC013425.
Cont. #: 2540
Johnson, G.C., P.J. Stabeno, and S.C. Riser (2004): The Bering Slope Current System revisited. J. Phys. Oceanogr., 34(2), 384–398, doi: 10.1175/1520-0485(2004)034<0384:TBSCSR>2.0.CO;2.
Cont. #: 5224
Kearney, K., A. Hermann, W. Cheng, I. Ortiz, and K. Aydin (2020): A coupled pelagic–benthic–sympagic biogeochemical model for the Bering Sea: documentation and validation of the BESTNPZ model (v2019.08.23) within a high-resolution regional ocean model. Geosci. Model Dev., 13, 597–650, doi: 10.5194/gmd-13-597-2020, View online.
Cont. #: 457
Kinder, T.H., J.D. Schumacher, and D.V. Hansen (1980): Observations of a baroclinic eddy: An example of mesoscale variability in the Bering Sea. J. Phys. Oceanogr., 10(8), 1228–1245, doi: 10.1175/1520-0485(1980)010<1228:OOABEA>2.
Cont. #: 3589
Ladd, C., and P.J. Stabeno (2012): Stratification on the Eastern Bering Sea Shelf revisited. Deep-Sea Res. II, 65–70, 72–83, doi: 10.1016/j.dsr2.2012.02.009.
Cont. #: 5159
Logerwell, E.A., M. Busby, K.L. Mier, H. Tabisola, and J. Duffy-Anderson (2020): The effect of oceanographic variability on the distribution of larval fishes of the northern Bering and Chukchi seas. Deep-Sea Res. II, 177, 104784, doi: 10.1016/j.dsr2.2020.104784, View online.
Cont. #: 1831
Luchin, V.A., V.A. Menovshchikov, V.M. Lavrentiev, and R.K. Reed (1999): Thermohaline structure and water masses in the Bering Sea. In Dynamics of the Bering Sea: A Summary of Physical, Chemical, and Biological Characteristics, and a Synopsis of Research on the Bering Sea, T.R. Loughlin and K. Ohtani (eds.), University of Alaska Sea Grant, AK-SG-99-03, North Pacific Marine Science Organization (PICES), 61–91.
Cont. #: 3541
Mathis, J.T., J.N. Cross, N.R. Bates, S.B. Moran, M.W. Lomas, C.W. Mordy, and P.J. Stabeno (2010): Seasonal distribution of dissolved inorganic carbon and net community production on the Bering Sea shelf. Biogeosciences, 7, 1769–1787, doi: 10.5194/bg-7-1769-2010.
Cont. #: 2656
Mordy, C.W., P.J. Stabeno, C. Ladd, S. Zeeman, D.P. Wisegarver, S.A. Salo, and G. Hunt, Jr. (2005): Nutrients and primary production along the eastern Aleutian Island Archipelago. Fish. Oceanogr., 14(Suppl. 1), 55–76, doi: 10.1111/j.1365-2419.2005.00364.x.
Cont. #: 724
Muench, R.D., and J.D. Schumacher (1985): On the Bering Sea ice edge front. J. Geophys. Res., 90(C2), 3185–3197, doi: 10.1029/JC090iC02p03185.
Cont. #: 948
Muench, R.D., J.D. Schumacher, and S.A. Salo (1988): Winter currents and hydrographic conditions on the northern central Bering Sea shelf. J. Geophys. Res., 93(C1), 516–526, doi: 10.1029/JC093iC01p00516.
Cont. #: 5349
Nielsen, J.M., N.A. Pelland, S.W. Bell, M.W. Lomas, L.B. Eisner, P.J. Stabeno, C. Harpold, and C.W. Mordy (2023): Seasonal dynamics of primary production in the eastern Bering Sea assessed using continuous temporal and vertical dissolved oxygen and chlorophyll-a measurements. J. Geophys. Res., 128(5), e2022JC019076, doi: 10.1029/2022JC019076, View article online at AGU (external link).
Cont. #: 2525
Okkonen, S.R., G.M. Schmidt, E.D. Cokelet, and P.J. Stabeno (2004): Satellite and hydrographic observations of the Bering Sea "Green Belt". Deep-Sea Res., 51(10–11), 1033–1051, doi: 10.1016/j.dsr2.2003.08.005.
Cont. #: 1537
Reed, R.K. (1995): On geostrophic reference levels in the Bering Sea Basin. J. Oceanogr., 51(4), 489–498, doi: 10.1007/BF02286394.
Cont. #: 1652
Reed, R.K. (1995): Water properties over the Bering Sea shelf: Climatology and variations. NOAA Tech. Report ERL 452-PMEL 42, NTIS: PB95-241527, 15 pp. [PDF Version]
Cont. #: 2134
Reed, R.K. (1999): A time series of temperature, salinity, and geopotential across the southeastern Bering Sea shelf, 1995–1999. NOAA Tech. Report ERL 455-PMEL 43, NTIS: PB2000-100564, NOAA/Pacific Marine Environmental Laboratory, Seattle, WA, 15 pp. [PDF Version]
Cont. #: 1374
Reed, R.K., G.V. Khen, P.J. Stabeno, and A.V. Verkhunov (1993): Water properties and flow over the deep Bering Sea basin, summer 1991. Deep-Sea Res., 40(11–12), 2325–2334, doi: 10.1016/0967-0637(93)90107-E.
Cont. #: 1138
Reed, R.K., and P.J. Stabeno (1989): Circulation and property distributions in the central Bering Sea, Spring 1988. NOAA Tech. Report ERL 439-PMEL 39, NTIS: PB90-155847, 13 pp. [PDF Version]
Cont. #: 1556
Reed, R.K., and P.J. Stabeno (1996): On the climatological mean circulation over the eastern Bering Sea shelf. Cont. Shelf Res., 16(10), 1297–1305, doi: 10.1016/0278-4343(95)00067-4.
Cont. #: 2952
Richter-Menge, J., J. Overland, A. Proshutinsky, V. Romanovsky, L. Bengtsson, L. Brigham, M. Dyurgerov, J.C. Gascard, S. Gerland, R. Graversen, C. Haas, M. Karcher, P. Kuhry, J. Maslanik, H. Melling, W. Maslowski, J. Morison, D. Perovich, R. Przybylak, V. Rachold, I. Rigor, A. Shiklomanov, J. Stroeve, D. Walker, and J. Walsh (2006): State of the Arctic Report. NOAA Special Report OAR PMEL, NOAA/OAR/PMEL, Seattle, WA, 36 pp. [PDF Version]
Cont. #: 436
Salo, S.A., C.H. Pease, and R.W. Lindsay (1980): Physical environment of the eastern Bering Sea, March 1979. NOAA Tech. Memo. ERL PMEL-21, NTIS: PB81-148496, 119 pp. [PDF Version]
Cont. #: 4656
Santora, J.A., L.B. Eisner, K.J. Kuletz, C. Ladd, M. Renner, and G.L. Hunt, Jr. (2018): Biogeography of seabirds within a high-latitude ecosystem: Use of a data-assimilative ocean model to assess impacts of mesoscale oceanography. J. Mar. Syst., 178, 38–51, doi: 10.1016/j.jmarsys.2017.10.006.
Cont. #: 573
Schumacher, J.D., K. Aagaard, C.H. Pease, and R.B. Tripp (1983): Effects of a shelf polynya on flow and water properties in the northern Bering Sea. J. Geophys. Res., 88(C5), 2723–2732, doi: 10.1029/JC088iC05p02723.
Cont. #: 352
Schumacher, J.D., T.H. Kinder, D.J. Pashinski, and R.L. Charnell (1979): A structural front over the continental shelf of the eastern Bering Sea. J. Phys. Oceanogr., 9(1), 79–87, doi: 10.1175/1520-0485(1979)009<0079:ASFOTC>2.
Cont. #: 4440
Sigler, M.F., F.J. Mueter, B.A. Bluhm, M.S. Busby, E.D. Cokelet, S.L. Danielson, A. De Robertis, L.B. Eisner, E.V. Farley, K. Iken, K.J. Kuletz, R.R. Lauth, E.A. Logerwell, and A.I. Pinchuk (2017): Late summer zoogeography of the northern Bering and Chukchi seas. Deep-Sea Res. II, 135, Arctic Ecosystem Integrated Survey (Arctic EIS): Marine ecosystem dynamics in the rapidly changing Pacific Arctic Gateway, 168–189, doi: 10.1016/j.dsr2.2016.03.005, Available online.
Cont. #: 2260
Sinclair, E.H., and P.J. Stabeno (2002): Mesopelagic nekton and associated physics of the southeastern Bering Sea. Deep-Sea Res. Pt. II, 49(26), 6127–6145, doi: 10.1016/S0967-0645(02)00337-5.
Cont. #: 4908
Stabeno, P.J., and S.W. Bell (2019): Extreme conditions in the Bering Sea (2017-2018): Record breaking low sea-ice extent. Geophys. Res. Lett., 46(15), 8952–8959, doi: 10.1029/2019GL083816, View online.
Cont. #: 4782
Stabeno, P.J., S.W. Bell, N.A. Bond, D.G. Kimmel, C.W. Mordy, and M.E. Sullivan (2019): Distributed Biological Observatory Region 1: Physics, chemistry and plankton in the northern Bering Sea. Deep-Sea Res. II, 162, 8–21, doi: 10.1016/j.dsr2.2018.11.006, View online.
Cont. #: 4060
Stabeno, P.J., and H.G. Hristova (2014): Observations of the Alaskan Stream near Samalga Pass and its connection to the Bering Sea: 2001– 2004. Deep-Sea Res. I, 88, 30–46, doi: 10.1016/j.dsr.2014.03.002.
Cont. #: 2660
Stabeno, P.J., D.G. Kachel, N.B. Kachel, and M.E. Sullivan (2005): Observations from moorings in the Aleutian Passes: Temperature, salinity and transport. Fish. Oceanogr., 14(Suppl. 1), 39–54, doi: 10.1111/j.1365-2419.2005.00362.x.
Cont. #: 2295
Stabeno, P.J., N.B. Kachel, M. Sullivan, and T.E. Whitledge (2002): Variability of physical and chemical characteristics along the 70-m isobath of the southeast Bering Sea. Deep-Sea Res. Pt. II, 49(26), 5931–5943, doi: 10.1016/S0967-0645(02)00327-2.
Cont. #: 2459
Stabeno, P.J., C. Ladd, and R.K. Reed (2009): Observations of the Aleutian North Slope Current, Bering Sea, 1996–2001. J. Geophys. Res., 114, C05015, doi: 10.1029/2007JC004705.
Cont. #: 3197
Stabeno, P.J., J. Napp, C. Mordy, and T. Whitledge (2010): Factors influencing physical structure and lower trophic levels of the eastern Bering Sea shelf in 2005: Sea ice, tides and winds. Prog. Oceanogr., 85(3–4), 180–196, doi: 10.1016/j.pocean.2010.02.010.
Cont. #: 3975
Sullivan, M.E., N.B. Kachel, C.W. Mordy, S.A. Salo, and P.J. Stabeno (2014): Sea ice and water column structure on the eastern Bering sea shelf. Deep-Sea Res. II, 109, 39–56, doi: 10.1016/j.dsr2.2014.05.009.
Cont. #: 4681
Tabisola, H.M., P.J. Stabeno, and C.W. Mordy (2017): Using a biophysical mooring as a sentinel for ecosystem change: The story of M2. In MTS/IEEE Oceans 17 Anchorage, Anchorage, Alaska, 18–21 September 2017, Available at IEEE Xplore.
Cont. #: 2832
Takahashi, T., S.C. Sutherland, R.A. Feely, and R. Wanninkhof (2006): Decadal change of the surface water pCO2 in the North Pacific: A synthesis of 35 years of observations. J. Geophys. Res., 111(C7), C07S05, doi: 10.1029/2005JC003074.
Cont. #: 5200
Wang, S., Q. Wang, M. Wang, G. Lohmann, and F. Qiao (2022): Arctic Ocean freshwater in CMIP6 coupled models. Earth's Future, 10, e2022EF002878, doi: 10.1029/2022EF002878, View online, open access at AGU (external link).
Cont. #: 5337
Zhao, J., Y. Wang, W. Liu, H. Bi, E.D. Cokelet, C.W. Mordy, N. Lawrence-Slavas, and C. Meinig (2022): Sea surface salinity variability in the Bering Sea in 2015-2020. Remote Sens., 14(3), 758, doi: 10.3390/rs14030758, View online (open access).
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