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1

Hodson, Richard. "Physical oceanography". Nature 575, n. 7782 (13 novembre 2019): S1. http://dx.doi.org/10.1038/d41586-019-03463-x.

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2

Pelegrí, Josep L., Enrique Álvarez-Fanjul, Manuel Espino, Jordi Font, Gregorio Parrilla e Agustín Sánchez-Arcilla. "Crucial times for Spanish physical oceanography". Scientia Marina 76, S1 (31 agosto 2012): 11–28. http://dx.doi.org/10.3989/scimar.03604.20a.

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3

Wunsch, Carl. "Henry Melson Stommel. 27 September 1920—17 January 1992". Biographical Memoirs of Fellows of the Royal Society 43 (gennaio 1997): 493–502. http://dx.doi.org/10.1098/rsbm.1997.0027.

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Henry Melson Stommel, probably the most original and important physical oceanographer of all time, was in large measure the creator of the modern field of dynamical oceanography. He contributed and inspired many of its most important ideas over a 45–year period. Hank, as many called him, was known throughout the world oceanographic community not only as a superb scientist, but as raconteur, explosives amateur, printer, painter, gentleman farmer, fiction writer and host with a puckish sense of humour and booming laugh.
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4

Charnock, Henry. "Descriptive physical oceanography". Marine Pollution Bulletin 22, n. 6 (giugno 1991): 313. http://dx.doi.org/10.1016/0025-326x(91)90814-9.

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5

Biescas, Berta, Barry Ruddick, Jean Kormann, Valentí Sallarès, Mladen R. Nedimović e Sandro Carniel. "Synthetic Modeling for an Acoustic Exploration System for Physical Oceanography". Journal of Atmospheric and Oceanic Technology 33, n. 1 (gennaio 2016): 191–200. http://dx.doi.org/10.1175/jtech-d-15-0137.1.

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AbstractMarine multichannel seismic (MCS) data, used to obtain structural reflection images of the earth’s subsurface, can also be used in physical oceanography exploration. This method provides vertical and lateral resolutions of O(10–100) m, covering the existing observational gap in oceanic exploration. All MCS data used so far in physical oceanography studies have been acquired using conventional seismic instrumentation originally designed for geological exploration. This work presents the proof of concept of an alternative MCS system that is better adapted to physical oceanography and has two goals: 1) to have an environmentally low-impact acoustic source to minimize any potential disturbance to marine life and 2) to be light and portable, thus being installed on midsize oceanographic vessels. The synthetic experiments simulate the main variables of the source, shooting, and streamer involved in the MCS technique. The proposed system utilizes a 5-s-long exponential chirp source of 208 dB relative to 1 μPa at 1 m with a frequency content of 20–100 Hz and a relatively short 500-m-long streamer with 100 channels. This study exemplifies through numerical simulations that the 5-s-long chirp source can reduce the peak of the pressure signal by 26 dB with respect to equivalent air gun–based sources by spreading the energy in time, greatly reducing the impact to marine life. Additionally, the proposed system could be transported and installed in midsize oceanographic vessels, opening new horizons in acoustic oceanography research.
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6

Yokota, K., K. Katsumata, M. Yamashita, Y. Fukao, S. Kodaira e S. Miura. "Seismic Oceanography: physical oceanography using MCS data". Oceanography in Japan 19, n. 6 (5 novembre 2010): 317–26. http://dx.doi.org/10.5928/kaiyou.19.6_317.

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7

Barclay, David R. "Introduction to the Acoustical Oceanography Technical Committee". Journal of the Acoustical Society of America 155, n. 3_Supplement (1 marzo 2024): A29. http://dx.doi.org/10.1121/10.0026673.

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The Acoustical Oceanography Technical Committee is responsible for representing and fostering Acoustical Oceanography within the Acoustical Society of America. It is concerned with the development and use of acoustical techniques to measure and understand the physical, biological, geological, and chemical parameters and processes of the sea. Several acoustical methods are used to quantitatively study various oceanographic processes. Approaches include ocean parameter estimation by acoustical methods, remote sensing by passive and active acoustics, acoustic imaging, inversion, and tomography, and developing acoustical instrumentation for oceanographic studies.
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8

Mellor, George, e Rui Xin Huang. "Introduction to Physical Oceanography". American Journal of Physics 65, n. 10 (ottobre 1997): 1028–29. http://dx.doi.org/10.1119/1.18716.

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9

Brink, Kenneth H. "Coastal Physical Oceanography Workshop". Eos, Transactions American Geophysical Union 69, n. 14 (1988): 204. http://dx.doi.org/10.1029/88eo00127.

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10

A., Balagiu. "Elements of oceanographic terminology in english and romanian". Scientific Bulletin of Naval Academy XXII, n. 1 (15 luglio 2019): 200–205. http://dx.doi.org/10.21279/1454-864x-19-i1-028.

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Abstract (sommario):
Oceanography is a vast domain dealing with various aspects of marine life, physical and chemical aspects of the seas and oceans of the world. Searching available oceanographic documents of the 19th, 20th and 21st century, the aim of the paper is to emphasize the specific terminology of at least one of the branches of oceanography. The branches of oceanography deal with marine biology, ocean chemistry, marine geology and marine physics. The differences between the Romanian and English terminology according to the etymology are brought into discussion and conclusions drawn according to the similarities and differences.
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11

Pisarev, S. V. "NANSEN’S CONTRIBUTION TO PHYSICAL OCEANOGRAPHY". Journal of Oceanological Research 50, n. 1 (28 aprile 2022): 108–21. http://dx.doi.org/10.29006/1564-2291.jor-2022.50(1).10.

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The article lists the main results of Nansen’s work in the field of physical oceanography. It tells about the results and ideas of Nansen in the field of arctic drifting measuring platforms, a bathometer, a hydrometer, a bottom current meter and unique sleds. The merits of Nansen in the field of regional oceanography are described: debunking the theory of the “open polar ocean”, measuring the depths of the Arctic Basin, estimating the trajectory and velocity of the transarctic drift, the dependence of the drift velocity and direction on the wind, factors determining the speed ice accretion, discovery and description of surface and warm (Atlantic) intermediate water masses in the Arctic. We are also talking about the processes in the ocean, which Nansen first measured, and then, together with Ekman, described them with mathematical formulas.
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12

Warren, Bruce. "Physical Oceanography in The Oceans". Oceanography 5, n. 3 (1992): 157–59. http://dx.doi.org/10.5670/oceanog.1992.07.

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13

Pedlosky, Joseph. "Graduate Education in Physical Oceanography". Oceanography 5, n. 2 (1992): 117–20. http://dx.doi.org/10.5670/oceanog.1992.19.

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14

Collins, Curt, e Jonathan Pennock. "The NSF Physical Oceanography Program". Eos, Transactions American Geophysical Union 67, n. 35 (1986): 651. http://dx.doi.org/10.1029/eo067i035p00651.

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15

Vincent, C. E. "Physical oceanography of coastal waters". Dynamics of Atmospheres and Oceans 9, n. 2 (luglio 1985): 212–13. http://dx.doi.org/10.1016/0377-0265(85)90006-5.

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16

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 39, n. 8 (agosto 1992): 623–38. http://dx.doi.org/10.1016/s0198-0254(05)80002-0.

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17

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 37, n. 1 (gennaio 1990): 1–17. http://dx.doi.org/10.1016/s0198-0254(05)80009-3.

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18

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 37, n. 5 (gennaio 1990): 391–409. http://dx.doi.org/10.1016/s0198-0254(05)80021-4.

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19

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 38, n. 4 (gennaio 1991): 273–86. http://dx.doi.org/10.1016/s0198-0254(05)80088-3.

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20

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 38, n. 2 (gennaio 1991): 93–109. http://dx.doi.org/10.1016/s0198-0254(05)80099-8.

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21

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 38, n. 1 (gennaio 1991): 1–21. http://dx.doi.org/10.1016/s0198-0254(05)80110-4.

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22

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 38, n. 7 (gennaio 1991): 521–39. http://dx.doi.org/10.1016/s0198-0254(05)80121-9.

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23

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 38, n. 12 (gennaio 1991): 993–1009. http://dx.doi.org/10.1016/s0198-0254(05)80128-1.

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24

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 37, n. 2 (gennaio 1990): 105–23. http://dx.doi.org/10.1016/s0198-0254(05)80138-4.

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25

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 38, n. 3 (gennaio 1991): 193–209. http://dx.doi.org/10.1016/s0198-0254(05)80145-1.

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26

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 38, n. 6 (gennaio 1991): 457–67. http://dx.doi.org/10.1016/s0198-0254(05)80155-4.

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27

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 39, n. 2 (febbraio 1992): 97–117. http://dx.doi.org/10.1016/s0198-0254(06)80002-6.

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28

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 39, n. 3 (marzo 1992): 183–203. http://dx.doi.org/10.1016/s0198-0254(06)80009-9.

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29

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 39, n. 4 (aprile 1992): 289–310. http://dx.doi.org/10.1016/s0198-0254(06)80016-6.

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30

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 39, n. 7 (luglio 1992): 533–54. http://dx.doi.org/10.1016/s0198-0254(06)80023-3.

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31

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 37, n. 4 (gennaio 1990): 281–96. http://dx.doi.org/10.1016/s0198-0254(06)80075-0.

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32

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 38, n. 5 (gennaio 1991): 355–70. http://dx.doi.org/10.1016/s0198-0254(06)80086-5.

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33

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 38, n. 10 (gennaio 1991): 807–27. http://dx.doi.org/10.1016/s0198-0254(06)80093-2.

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34

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 37, n. 3 (gennaio 1990): 213–26. http://dx.doi.org/10.1016/s0198-0254(06)80100-7.

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35

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 39, n. 1 (gennaio 1992): 1–20. http://dx.doi.org/10.1016/s0198-0254(06)80125-1.

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36

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 38, n. 11 (gennaio 1991): 909–20. http://dx.doi.org/10.1016/s0198-0254(06)80151-2.

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37

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 39, n. 6 (giugno 1992): 475–84. http://dx.doi.org/10.1016/s0198-0254(06)80158-5.

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38

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 39, n. 9 (gennaio 1992): 709–34. http://dx.doi.org/10.1016/s0198-0254(06)80593-5.

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39

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 39, n. 5 (maggio 1992): 393–410. http://dx.doi.org/10.1016/s0198-0254(06)80632-1.

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40

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 38, n. 8 (gennaio 1991): 619–35. http://dx.doi.org/10.1016/s0198-0254(06)80675-8.

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41

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 39, n. 11 (novembre 1992): 907–23. http://dx.doi.org/10.1016/s0198-0254(06)80692-8.

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42

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 39, n. 12 (dicembre 1992): 989–1003. http://dx.doi.org/10.1016/s0198-0254(09)90015-2.

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43

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 37, n. 11 (gennaio 1990): 973–94. http://dx.doi.org/10.1016/s0198-0254(09)90025-5.

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44

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 37, n. 9 (gennaio 1990): 785–91. http://dx.doi.org/10.1016/s0198-0254(09)90033-4.

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45

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 37, n. 7 (gennaio 1990): 567–86. http://dx.doi.org/10.1016/s0198-0254(09)90043-7.

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46

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 38, n. 9 (gennaio 1991): 705–25. http://dx.doi.org/10.1016/s0198-0254(09)90051-6.

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47

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 32, n. 10 (gennaio 1985): 783–99. http://dx.doi.org/10.1016/0198-0254(85)90022-6.

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48

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 32, n. 11 (gennaio 1985): 895–910. http://dx.doi.org/10.1016/0198-0254(85)90036-6.

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49

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 32, n. 3 (gennaio 1985): 161–74. http://dx.doi.org/10.1016/0198-0254(85)90086-x.

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50

"Physical oceanography". Deep Sea Research Part B. Oceanographic Literature Review 32, n. 7 (gennaio 1985): 497–514. http://dx.doi.org/10.1016/0198-0254(85)90104-9.

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